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Conserved domains on  [gi|52783098|sp|Q9HCJ6|]
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RecName: Full=Synaptic vesicle membrane protein VAT-1 homolog-like

Protein Classification

medium chain dehydrogenase/reductase family protein( domain architecture ID 10169643)

medium chain dehydrogenase/reductase (MDR) family protein similar to Homo sapiens synaptic vesicle membrane protein VAT-1 homolog (VAT1) which may play a role in cancer cell motility and shows putative ATPase activity and calcium dependency

Graphical summary

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List of domain hits

Name Accession Description Interval E-value
MDR3 cd08275
Medium chain dehydrogenases/reductase (MDR)/zinc-dependent alcohol dehydrogenase-like family; ...
43-380 0e+00

Medium chain dehydrogenases/reductase (MDR)/zinc-dependent alcohol dehydrogenase-like family; This group is a member of the medium chain dehydrogenases/reductase (MDR)/zinc-dependent alcohol dehydrogenase-like family, but lacks the zinc-binding sites of the zinc-dependent alcohol dehydrogenases. The medium chain dehydrogenases/reductase (MDR)/zinc-dependent alcohol dehydrogenase-like family, which contains the zinc-dependent alcohol dehydrogenase (ADH-Zn) and related proteins, is a diverse group of proteins related to the first identified member, class I mammalian ADH. MDRs display a broad range of activities and are distinguished from the smaller short chain dehydrogenases (~ 250 amino acids vs. the ~ 350 amino acids of the MDR). The MDR proteins have 2 domains: a C-terminal NAD(P)-binding Rossmann fold domain of a beta-alpha form and an N-terminal catalytic domain with distant homology to GroES. The MDR group contains a host of activities, including the founding alcohol dehydrogenase (ADH), quinone reductase, sorbitol dehydrogenase, formaldehyde dehydrogenase, butanediol DH, ketose reductase, cinnamyl reductase, and numerous others. The zinc-dependent alcohol dehydrogenases (ADHs) catalyze the NAD(P)(H)-dependent interconversion of alcohols to aldehydes or ketones. Active site zinc has a catalytic role, while structural zinc aids in stability. ADH-like proteins typically form dimers (typically higher plants, mammals) or tetramers (yeast, bacteria), and generally have 2 tightly bound zinc atoms per subunit. The active site zinc is coordinated by a histidine, two cysteines, and a water molecule. The second zinc seems to play a structural role, affects subunit interactions, and is typically coordinated by 4 cysteines.


:

Pssm-ID: 176236 [Multi-domain]  Cd Length: 337  Bit Score: 559.90  E-value: 0e+00
                        10        20        30        40        50        60        70        80
                ....*....|....*....|....*....|....*....|....*....|....*....|....*....|....*....|
gi 52783098  43 RAVVLAGFGGLNKLRLFRKAMPEPQDGELKIRVKACGLNFIDLMVRQGNIDNPPKTPLVPGFECSGIVEALGDSVKGYEI 122
Cdd:cd08275   1 RAVVLTGFGGLDKLKVEKEALPEPSSGEVRVRVEACGLNFADLMARQGLYDSAPKPPFVPGFECAGTVEAVGEGVKDFKV 80
                        90       100       110       120       130       140       150       160
                ....*....|....*....|....*....|....*....|....*....|....*....|....*....|....*....|
gi 52783098 123 GDRVMAFVNYNAWAEVVCTPVEFVYKIPDDMSFSEAAAFPMNFVTAYVMLFEVANLREGMSVLVHSAGGGVGQAVAQLCS 202
Cdd:cd08275  81 GDRVMGLTRFGGYAEVVNVPADQVFPLPDGMSFEEAAAFPVNYLTAYYALFELGNLRPGQSVLVHSAAGGVGLAAGQLCK 160
                       170       180       190       200       210       220       230       240
                ....*....|....*....|....*....|....*....|....*....|....*....|....*....|....*....|
gi 52783098 203 TVPNVTVFGTASTFKHEAIKDS-VTHLFDRN-ADYVQEVKRISAEGVDIVLDCLCGDNTGKGLSLLKPLGTYILYGSSNM 280
Cdd:cd08275 161 TVPNVTVVGTASASKHEALKENgVTHVIDYRtQDYVEEVKKISPEGVDIVLDALGGEDTRKSYDLLKPMGRLVVYGAANL 240
                       250       260       270       280       290       300       310       320
                ....*....|....*....|....*....|....*....|....*....|....*....|....*....|....*....|
gi 52783098 281 VTGETKSFFSFAKSWWQVEKVNPIKLYEENKVIAGFSLLnLLFKQGRagLIRGVVEKLIGLYNQKKIKPVVDSLWALEEV 360
Cdd:cd08275 241 VTGEKRSWFKLAKKWWNRPKVDPMKLISENKSVLGFNLG-WLFEERE--LLTEVMDKLLKLYEEGKIKPKIDSVFPFEEV 317
                       330       340
                ....*....|....*....|
gi 52783098 361 KEAMQRIHDRGNIGKLILDV 380
Cdd:cd08275 318 GEAMRRLQSRKNIGKVVLTP 337
 
Name Accession Description Interval E-value
MDR3 cd08275
Medium chain dehydrogenases/reductase (MDR)/zinc-dependent alcohol dehydrogenase-like family; ...
43-380 0e+00

Medium chain dehydrogenases/reductase (MDR)/zinc-dependent alcohol dehydrogenase-like family; This group is a member of the medium chain dehydrogenases/reductase (MDR)/zinc-dependent alcohol dehydrogenase-like family, but lacks the zinc-binding sites of the zinc-dependent alcohol dehydrogenases. The medium chain dehydrogenases/reductase (MDR)/zinc-dependent alcohol dehydrogenase-like family, which contains the zinc-dependent alcohol dehydrogenase (ADH-Zn) and related proteins, is a diverse group of proteins related to the first identified member, class I mammalian ADH. MDRs display a broad range of activities and are distinguished from the smaller short chain dehydrogenases (~ 250 amino acids vs. the ~ 350 amino acids of the MDR). The MDR proteins have 2 domains: a C-terminal NAD(P)-binding Rossmann fold domain of a beta-alpha form and an N-terminal catalytic domain with distant homology to GroES. The MDR group contains a host of activities, including the founding alcohol dehydrogenase (ADH), quinone reductase, sorbitol dehydrogenase, formaldehyde dehydrogenase, butanediol DH, ketose reductase, cinnamyl reductase, and numerous others. The zinc-dependent alcohol dehydrogenases (ADHs) catalyze the NAD(P)(H)-dependent interconversion of alcohols to aldehydes or ketones. Active site zinc has a catalytic role, while structural zinc aids in stability. ADH-like proteins typically form dimers (typically higher plants, mammals) or tetramers (yeast, bacteria), and generally have 2 tightly bound zinc atoms per subunit. The active site zinc is coordinated by a histidine, two cysteines, and a water molecule. The second zinc seems to play a structural role, affects subunit interactions, and is typically coordinated by 4 cysteines.


Pssm-ID: 176236 [Multi-domain]  Cd Length: 337  Bit Score: 559.90  E-value: 0e+00
                        10        20        30        40        50        60        70        80
                ....*....|....*....|....*....|....*....|....*....|....*....|....*....|....*....|
gi 52783098  43 RAVVLAGFGGLNKLRLFRKAMPEPQDGELKIRVKACGLNFIDLMVRQGNIDNPPKTPLVPGFECSGIVEALGDSVKGYEI 122
Cdd:cd08275   1 RAVVLTGFGGLDKLKVEKEALPEPSSGEVRVRVEACGLNFADLMARQGLYDSAPKPPFVPGFECAGTVEAVGEGVKDFKV 80
                        90       100       110       120       130       140       150       160
                ....*....|....*....|....*....|....*....|....*....|....*....|....*....|....*....|
gi 52783098 123 GDRVMAFVNYNAWAEVVCTPVEFVYKIPDDMSFSEAAAFPMNFVTAYVMLFEVANLREGMSVLVHSAGGGVGQAVAQLCS 202
Cdd:cd08275  81 GDRVMGLTRFGGYAEVVNVPADQVFPLPDGMSFEEAAAFPVNYLTAYYALFELGNLRPGQSVLVHSAAGGVGLAAGQLCK 160
                       170       180       190       200       210       220       230       240
                ....*....|....*....|....*....|....*....|....*....|....*....|....*....|....*....|
gi 52783098 203 TVPNVTVFGTASTFKHEAIKDS-VTHLFDRN-ADYVQEVKRISAEGVDIVLDCLCGDNTGKGLSLLKPLGTYILYGSSNM 280
Cdd:cd08275 161 TVPNVTVVGTASASKHEALKENgVTHVIDYRtQDYVEEVKKISPEGVDIVLDALGGEDTRKSYDLLKPMGRLVVYGAANL 240
                       250       260       270       280       290       300       310       320
                ....*....|....*....|....*....|....*....|....*....|....*....|....*....|....*....|
gi 52783098 281 VTGETKSFFSFAKSWWQVEKVNPIKLYEENKVIAGFSLLnLLFKQGRagLIRGVVEKLIGLYNQKKIKPVVDSLWALEEV 360
Cdd:cd08275 241 VTGEKRSWFKLAKKWWNRPKVDPMKLISENKSVLGFNLG-WLFEERE--LLTEVMDKLLKLYEEGKIKPKIDSVFPFEEV 317
                       330       340
                ....*....|....*....|
gi 52783098 361 KEAMQRIHDRGNIGKLILDV 380
Cdd:cd08275 318 GEAMRRLQSRKNIGKVVLTP 337
Qor COG0604
NADPH:quinone reductase or related Zn-dependent oxidoreductase [Energy production and ...
42-381 6.30e-92

NADPH:quinone reductase or related Zn-dependent oxidoreductase [Energy production and conversion, General function prediction only];


Pssm-ID: 440369 [Multi-domain]  Cd Length: 322  Bit Score: 280.11  E-value: 6.30e-92
                        10        20        30        40        50        60        70        80
                ....*....|....*....|....*....|....*....|....*....|....*....|....*....|....*....|
gi 52783098  42 MRAVVLAGFGGLNKLRLFRKAMPEPQDGELKIRVKACGLNFIDLMVRQGNIDNPPKTPLVPGFECSGIVEALGDSVKGYE 121
Cdd:COG0604   1 MKAIVITEFGGPEVLELEEVPVPEPGPGEVLVRVKAAGVNPADLLIRRGLYPLPPGLPFIPGSDAAGVVVAVGEGVTGFK 80
                        90       100       110       120       130       140       150       160
                ....*....|....*....|....*....|....*....|....*....|....*....|....*....|....*....|
gi 52783098 122 IGDRVMAFVNYNAWAEVVCTPVEFVYKIPDDMSFSEAAAFPMNFVTAYVMLFEVANLREGMSVLVHSAGGGVGQAVAQLC 201
Cdd:COG0604  81 VGDRVAGLGRGGGYAEYVVVPADQLVPLPDGLSFEEAAALPLAGLTAWQALFDRGRLKPGETVLVHGAAGGVGSAAVQLA 160
                       170       180       190       200       210       220       230       240
                ....*....|....*....|....*....|....*....|....*....|....*....|....*....|....*....|
gi 52783098 202 STVpNVTVFGTASTF-KHEAIKDS-VTHLFD-RNADYVQEVKRISA-EGVDIVLDCLCGDNTGKGLSLLKPLGTYILYGS 277
Cdd:COG0604 161 KAL-GARVIATASSPeKAELLRALgADHVIDyREEDFAERVRALTGgRGVDVVLDTVGGDTLARSLRALAPGGRLVSIGA 239
                       250       260       270       280       290       300       310       320
                ....*....|....*....|....*....|....*....|....*....|....*....|....*....|....*....|
gi 52783098 278 SNMVTGEtksffsfakswwqvekVNPIKLYEENKVIAGFSllnlLFKQGRAGLiRGVVEKLIGLYNQKKIKPVVDSLWAL 357
Cdd:COG0604 240 ASGAPPP----------------LDLAPLLLKGLTLTGFT----LFARDPAER-RAALAELARLLAAGKLRPVIDRVFPL 298
                       330       340
                ....*....|....*....|....
gi 52783098 358 EEVKEAMQRIHDRGNIGKLILDVE 381
Cdd:COG0604 299 EEAAEAHRLLESGKHRGKVVLTVD 322
PKS_ER smart00829
Enoylreductase; Enoylreductase in Polyketide synthases.
73-378 9.36e-70

Enoylreductase; Enoylreductase in Polyketide synthases.


Pssm-ID: 214840 [Multi-domain]  Cd Length: 287  Bit Score: 221.88  E-value: 9.36e-70
                           10        20        30        40        50        60        70        80
                   ....*....|....*....|....*....|....*....|....*....|....*....|....*....|....*....|
gi 52783098     73 IRVKACGLNFIDLMVRQGNIDNPPktplVPGFECSGIVEALGDSVKGYEIGDRVMAFVNyNAWAEVVCTPVEFVYKIPDD 152
Cdd:smart00829   1 IEVRAAGLNFRDVLIALGLYPGEA----VLGGECAGVVTRVGPGVTGLAVGDRVMGLAP-GAFATRVVTDARLVVPIPDG 75
                           90       100       110       120       130       140       150       160
                   ....*....|....*....|....*....|....*....|....*....|....*....|....*....|....*....|
gi 52783098    153 MSFSEAAAFPMNFVTAYVMLFEVANLREGMSVLVHSAGGGVGQAVAQLCSTVpNVTVFGTAST-FKHEAIKD---SVTHL 228
Cdd:smart00829  76 WSFEEAATVPVVFLTAYYALVDLARLRPGESVLIHAAAGGVGQAAIQLARHL-GAEVFATAGSpEKRDFLRAlgiPDDHI 154
                          170       180       190       200       210       220       230       240
                   ....*....|....*....|....*....|....*....|....*....|....*....|....*....|....*....|
gi 52783098    229 FD-RNADYVQEVKRISA-EGVDIVLDCLCGDNTGKGLSLLKPLGTYILYGSSNMVTGETKSFFSFAKSwwqvekvnpikl 306
Cdd:smart00829 155 FSsRDLSFADEILRATGgRGVDVVLNSLSGEFLDASLRCLAPGGRFVEIGKRDIRDNSQLAMAPFRPN------------ 222
                          250       260       270       280       290       300       310
                   ....*....|....*....|....*....|....*....|....*....|....*....|....*....|..
gi 52783098    307 yeenkviAGFSLLNLLFKQGRAGLIRGVVEKLIGLYNQKKIKPVVDSLWALEEVKEAMQRIHDRGNIGKLIL 378
Cdd:smart00829 223 -------VSYHAVDLDALEEGPDRIRELLAEVLELFAEGVLRPLPVTVFPISDAEDAFRYMQQGKHIGKVVL 287
PTZ00354 PTZ00354
alcohol dehydrogenase; Provisional
42-385 4.83e-60

alcohol dehydrogenase; Provisional


Pssm-ID: 173547 [Multi-domain]  Cd Length: 334  Bit Score: 198.33  E-value: 4.83e-60
                         10        20        30        40        50        60        70        80
                 ....*....|....*....|....*....|....*....|....*....|....*....|....*....|....*....|
gi 52783098   42 MRAVVLAGFGGLNKLRLFRKAMPEPQDGELKIRVKACGLNFIDLMVRQGNIDNPPKTPLVPGFECSGIVEALGDSVKGYE 121
Cdd:PTZ00354   2 MRAVTLKGFGGVDVLKIGESPKPAPKRNDVLIKVSAAGVNRADTLQRQGKYPPPPGSSEILGLEVAGYVEDVGSDVKRFK 81
                         90       100       110       120       130       140       150       160
                 ....*....|....*....|....*....|....*....|....*....|....*....|....*....|....*....|
gi 52783098  122 IGDRVMAFVNYNAWAEVVCTPVEFVYKIPDDMSFSEAAAFPMNFVTAYVMLFEVANLREGMSVLVHSAGGGVGQAVAQLC 201
Cdd:PTZ00354  82 EGDRVMALLPGGGYAEYAVAHKGHVMHIPQGYTFEEAAAIPEAFLTAWQLLKKHGDVKKGQSVLIHAGASGVGTAAAQLA 161
                        170       180       190       200       210       220       230       240
                 ....*....|....*....|....*....|....*....|....*....|....*....|....*....|....*....|
gi 52783098  202 STVPNVTVFGTASTFKHEAIK---DSVTHLFDRNADYVQEVKR-ISAEGVDIVLDCLCGDNTGKGLSLLKPLGTYILYGs 277
Cdd:PTZ00354 162 EKYGAATIITTSSEEKVDFCKklaAIILIRYPDEEGFAPKVKKlTGEKGVNLVLDCVGGSYLSETAEVLAVDGKWIVYG- 240
                        250       260       270       280       290       300       310       320
                 ....*....|....*....|....*....|....*....|....*....|....*....|....*....|....*....|
gi 52783098  278 snmvtgetksFFSFAKswwqVEKVNPIKLY-EENKVIagFSLLNLLFKQGRAGLIRGVVEKLIGLYNQKKIKPVVDSLWA 356
Cdd:PTZ00354 241 ----------FMGGAK----VEKFNLLPLLrKRASII--FSTLRSRSDEYKADLVASFEREVLPYMEEGEIKPIVDRTYP 304
                        330       340
                 ....*....|....*....|....*....
gi 52783098  357 LEEVKEAMQRIHDRGNIGKLILDVEKTPT 385
Cdd:PTZ00354 305 LEEVAEAHTFLEQNKNIGKVVLTVNEPLS 333
quinone_pig3 TIGR02824
putative NAD(P)H quinone oxidoreductase, PIG3 family; Members of this family are putative ...
42-380 1.01e-55

putative NAD(P)H quinone oxidoreductase, PIG3 family; Members of this family are putative quinone oxidoreductases that belong to the broader superfamily (modeled by Pfam pfam00107) of zinc-dependent alcohol (of medium chain length) dehydrogenases and quinone oxiooreductases. The alignment shows no motif of conserved Cys residues as are found in zinc-binding members of the superfamily, and members are likely to be quinone oxidoreductases instead. A member of this family in Homo sapiens, PIG3, is induced by p53 but is otherwise uncharacterized. [Unknown function, Enzymes of unknown specificity]


Pssm-ID: 274316 [Multi-domain]  Cd Length: 325  Bit Score: 186.70  E-value: 1.01e-55
                          10        20        30        40        50        60        70        80
                  ....*....|....*....|....*....|....*....|....*....|....*....|....*....|....*....|
gi 52783098    42 MRAVVLAGFGGLNKLRLFRKAMPEPQDGELKIRVKACGLNFIDLMVRQGNIDNPPKTPLVPGFECSGIVEALGDSVKGYE 121
Cdd:TIGR02824   1 MKAIEITEPGGPEVLVLVEVPLPVPKAGEVLIRVAAAGVNRPDLLQRAGKYPPPPGASDILGLEVAGEVVAVGEGVSRWK 80
                          90       100       110       120       130       140       150       160
                  ....*....|....*....|....*....|....*....|....*....|....*....|....*....|....*....|
gi 52783098   122 IGDRVMAFVNYNAWAEVVCTPVEFVYKIPDDMSFSEAAAFPMNFVTAYVMLFEVANLREGMSVLVHSAGGGVGQAVAQLC 201
Cdd:TIGR02824  81 VGDRVCALVAGGGYAEYVAVPAGQVLPVPEGLSLVEAAALPETFFTVWSNLFQRGGLKAGETVLIHGGASGIGTTAIQLA 160
                         170       180       190       200       210       220       230       240
                  ....*....|....*....|....*....|....*....|....*....|....*....|....*....|....*....|
gi 52783098   202 STVpNVTVFGTA-STFKHEAIKD-SVTHLFD-RNADYVQEVKRISA-EGVDIVLDCLCGDNTGKGLSLLKPLGTYILYGS 277
Cdd:TIGR02824 161 KAF-GARVFTTAgSDEKCAACEAlGADIAINyREEDFVEVVKAETGgKGVDVILDIVGGSYLNRNIKALALDGRIVQIGF 239
                         250       260       270       280       290       300       310       320
                  ....*....|....*....|....*....|....*....|....*....|....*....|....*....|....*....|
gi 52783098   278 SNMVTGEtksffsfakswwqvekVNPIKLYEENKVIAGfSLLNLLFKQGRAGLIRGVVEKLIGLYNQKKIKPVVDSLWAL 357
Cdd:TIGR02824 240 QGGRKAE----------------LDLGPLLAKRLTITG-STLRARPVAEKAAIAAELREHVWPLLASGRVRPVIDKVFPL 302
                         330       340
                  ....*....|....*....|...
gi 52783098   358 EEVKEAMQRIHDRGNIGKLILDV 380
Cdd:TIGR02824 303 EDAAQAHALMESGDHIGKIVLTV 325
ADH_N pfam08240
Alcohol dehydrogenase GroES-like domain; This is the catalytic domain of alcohol ...
69-166 4.49e-15

Alcohol dehydrogenase GroES-like domain; This is the catalytic domain of alcohol dehydrogenases. Many of them contain an inserted zinc binding domain. This domain has a GroES-like structure.


Pssm-ID: 400513 [Multi-domain]  Cd Length: 106  Bit Score: 70.72  E-value: 4.49e-15
                          10        20        30        40        50        60        70        80
                  ....*....|....*....|....*....|....*....|....*....|....*....|....*....|....*....|
gi 52783098    69 GELKIRVKACGLNFIDLMVRQGNIdNPPKTPLVPGFECSGIVEALGDSVKGYEIGDRVMAFVNYN-----AW---AEVVC 140
Cdd:pfam08240   1 GEVLVKVKAAGICGSDLHIYKGGN-PPVKLPLILGHEFAGEVVEVGPGVTGLKVGDRVVVEPLIPcgkceYCregRYNLC 79
                          90       100
                  ....*....|....*....|....*.
gi 52783098   141 TPVEFVYkIPDDMSFSEAAAFPMNFV 166
Cdd:pfam08240  80 PNGRFLG-YDRDGGFAEYVVVPERNL 104
 
Name Accession Description Interval E-value
MDR3 cd08275
Medium chain dehydrogenases/reductase (MDR)/zinc-dependent alcohol dehydrogenase-like family; ...
43-380 0e+00

Medium chain dehydrogenases/reductase (MDR)/zinc-dependent alcohol dehydrogenase-like family; This group is a member of the medium chain dehydrogenases/reductase (MDR)/zinc-dependent alcohol dehydrogenase-like family, but lacks the zinc-binding sites of the zinc-dependent alcohol dehydrogenases. The medium chain dehydrogenases/reductase (MDR)/zinc-dependent alcohol dehydrogenase-like family, which contains the zinc-dependent alcohol dehydrogenase (ADH-Zn) and related proteins, is a diverse group of proteins related to the first identified member, class I mammalian ADH. MDRs display a broad range of activities and are distinguished from the smaller short chain dehydrogenases (~ 250 amino acids vs. the ~ 350 amino acids of the MDR). The MDR proteins have 2 domains: a C-terminal NAD(P)-binding Rossmann fold domain of a beta-alpha form and an N-terminal catalytic domain with distant homology to GroES. The MDR group contains a host of activities, including the founding alcohol dehydrogenase (ADH), quinone reductase, sorbitol dehydrogenase, formaldehyde dehydrogenase, butanediol DH, ketose reductase, cinnamyl reductase, and numerous others. The zinc-dependent alcohol dehydrogenases (ADHs) catalyze the NAD(P)(H)-dependent interconversion of alcohols to aldehydes or ketones. Active site zinc has a catalytic role, while structural zinc aids in stability. ADH-like proteins typically form dimers (typically higher plants, mammals) or tetramers (yeast, bacteria), and generally have 2 tightly bound zinc atoms per subunit. The active site zinc is coordinated by a histidine, two cysteines, and a water molecule. The second zinc seems to play a structural role, affects subunit interactions, and is typically coordinated by 4 cysteines.


Pssm-ID: 176236 [Multi-domain]  Cd Length: 337  Bit Score: 559.90  E-value: 0e+00
                        10        20        30        40        50        60        70        80
                ....*....|....*....|....*....|....*....|....*....|....*....|....*....|....*....|
gi 52783098  43 RAVVLAGFGGLNKLRLFRKAMPEPQDGELKIRVKACGLNFIDLMVRQGNIDNPPKTPLVPGFECSGIVEALGDSVKGYEI 122
Cdd:cd08275   1 RAVVLTGFGGLDKLKVEKEALPEPSSGEVRVRVEACGLNFADLMARQGLYDSAPKPPFVPGFECAGTVEAVGEGVKDFKV 80
                        90       100       110       120       130       140       150       160
                ....*....|....*....|....*....|....*....|....*....|....*....|....*....|....*....|
gi 52783098 123 GDRVMAFVNYNAWAEVVCTPVEFVYKIPDDMSFSEAAAFPMNFVTAYVMLFEVANLREGMSVLVHSAGGGVGQAVAQLCS 202
Cdd:cd08275  81 GDRVMGLTRFGGYAEVVNVPADQVFPLPDGMSFEEAAAFPVNYLTAYYALFELGNLRPGQSVLVHSAAGGVGLAAGQLCK 160
                       170       180       190       200       210       220       230       240
                ....*....|....*....|....*....|....*....|....*....|....*....|....*....|....*....|
gi 52783098 203 TVPNVTVFGTASTFKHEAIKDS-VTHLFDRN-ADYVQEVKRISAEGVDIVLDCLCGDNTGKGLSLLKPLGTYILYGSSNM 280
Cdd:cd08275 161 TVPNVTVVGTASASKHEALKENgVTHVIDYRtQDYVEEVKKISPEGVDIVLDALGGEDTRKSYDLLKPMGRLVVYGAANL 240
                       250       260       270       280       290       300       310       320
                ....*....|....*....|....*....|....*....|....*....|....*....|....*....|....*....|
gi 52783098 281 VTGETKSFFSFAKSWWQVEKVNPIKLYEENKVIAGFSLLnLLFKQGRagLIRGVVEKLIGLYNQKKIKPVVDSLWALEEV 360
Cdd:cd08275 241 VTGEKRSWFKLAKKWWNRPKVDPMKLISENKSVLGFNLG-WLFEERE--LLTEVMDKLLKLYEEGKIKPKIDSVFPFEEV 317
                       330       340
                ....*....|....*....|
gi 52783098 361 KEAMQRIHDRGNIGKLILDV 380
Cdd:cd08275 318 GEAMRRLQSRKNIGKVVLTP 337
Qor COG0604
NADPH:quinone reductase or related Zn-dependent oxidoreductase [Energy production and ...
42-381 6.30e-92

NADPH:quinone reductase or related Zn-dependent oxidoreductase [Energy production and conversion, General function prediction only];


Pssm-ID: 440369 [Multi-domain]  Cd Length: 322  Bit Score: 280.11  E-value: 6.30e-92
                        10        20        30        40        50        60        70        80
                ....*....|....*....|....*....|....*....|....*....|....*....|....*....|....*....|
gi 52783098  42 MRAVVLAGFGGLNKLRLFRKAMPEPQDGELKIRVKACGLNFIDLMVRQGNIDNPPKTPLVPGFECSGIVEALGDSVKGYE 121
Cdd:COG0604   1 MKAIVITEFGGPEVLELEEVPVPEPGPGEVLVRVKAAGVNPADLLIRRGLYPLPPGLPFIPGSDAAGVVVAVGEGVTGFK 80
                        90       100       110       120       130       140       150       160
                ....*....|....*....|....*....|....*....|....*....|....*....|....*....|....*....|
gi 52783098 122 IGDRVMAFVNYNAWAEVVCTPVEFVYKIPDDMSFSEAAAFPMNFVTAYVMLFEVANLREGMSVLVHSAGGGVGQAVAQLC 201
Cdd:COG0604  81 VGDRVAGLGRGGGYAEYVVVPADQLVPLPDGLSFEEAAALPLAGLTAWQALFDRGRLKPGETVLVHGAAGGVGSAAVQLA 160
                       170       180       190       200       210       220       230       240
                ....*....|....*....|....*....|....*....|....*....|....*....|....*....|....*....|
gi 52783098 202 STVpNVTVFGTASTF-KHEAIKDS-VTHLFD-RNADYVQEVKRISA-EGVDIVLDCLCGDNTGKGLSLLKPLGTYILYGS 277
Cdd:COG0604 161 KAL-GARVIATASSPeKAELLRALgADHVIDyREEDFAERVRALTGgRGVDVVLDTVGGDTLARSLRALAPGGRLVSIGA 239
                       250       260       270       280       290       300       310       320
                ....*....|....*....|....*....|....*....|....*....|....*....|....*....|....*....|
gi 52783098 278 SNMVTGEtksffsfakswwqvekVNPIKLYEENKVIAGFSllnlLFKQGRAGLiRGVVEKLIGLYNQKKIKPVVDSLWAL 357
Cdd:COG0604 240 ASGAPPP----------------LDLAPLLLKGLTLTGFT----LFARDPAER-RAALAELARLLAAGKLRPVIDRVFPL 298
                       330       340
                ....*....|....*....|....
gi 52783098 358 EEVKEAMQRIHDRGNIGKLILDVE 381
Cdd:COG0604 299 EEAAEAHRLLESGKHRGKVVLTVD 322
p53_inducible_oxidoreductase cd05276
PIG3 p53-inducible quinone oxidoreductase; PIG3 p53-inducible quinone oxidoreductase, a medium ...
42-378 3.70e-77

PIG3 p53-inducible quinone oxidoreductase; PIG3 p53-inducible quinone oxidoreductase, a medium chain dehydrogenase/reductase family member, acts in the apoptotic pathway. PIG3 reduces ortho-quinones, but its apoptotic activity has been attributed to oxidative stress generation, since overexpression of PIG3 accumulates reactive oxygen species. PIG3 resembles the MDR family member quinone reductases, which catalyze the reduction of quinone to hydroxyquinone. NAD(P)(H)-dependent oxidoreductases are the major enzymes in the interconversion of alcohols and aldehydes or ketones. Alcohol dehydrogenase in the liver converts ethanol and NAD+ to acetaldehyde and NADH, while in yeast and some other microorganisms ADH catalyzes the conversion acetaldehyde to ethanol in alcoholic fermentation. ADH is a member of the medium chain alcohol dehydrogenase family (MDR), which has a NAD(P)(H)-binding domain in a Rossmann fold of a beta-alpha form. The NAD(H)-binding region is comprised of 2 structurally similar halves, each of which contacts a mononucleotide. A GxGxxG motif after the first mononucleotide contact half allows the close contact of the coenzyme with the ADH backbone. The N-terminal catalytic domain has a distant homology to GroES. These proteins typically form dimers (typically higher plants, mammals) or tetramers (yeast, bacteria), and have 2 tightly bound zinc atoms per subunit, a catalytic zinc at the active site, and a structural zinc in a lobe of the catalytic domain. NAD(H) binding occurs in the cleft between the catalytic and coenzyme-binding domains at the active site, and coenzyme binding induces a conformational closing of this cleft. Coenzyme binding typically precedes and contributes to substrate binding. In human ADH catalysis, the zinc ion helps coordinate the alcohol, followed by deprotonation of a histidine, the ribose of NAD, a serine, then the alcohol, which allows the transfer of a hydride to NAD+, creating NADH and a zinc-bound aldehyde or ketone. In yeast and some bacteria, the active site zinc binds an aldehyde, polarizing it, and leading to the reverse reaction.


Pssm-ID: 176180 [Multi-domain]  Cd Length: 323  Bit Score: 242.35  E-value: 3.70e-77
                        10        20        30        40        50        60        70        80
                ....*....|....*....|....*....|....*....|....*....|....*....|....*....|....*....|
gi 52783098  42 MRAVVLAGFGGLNKLRLFRKAMPEPQDGELKIRVKACGLNFIDLMVRQGNIDNPPKTPLVPGFECSGIVEALGDSVKGYE 121
Cdd:cd05276   1 MKAIVIKEPGGPEVLELGEVPKPAPGPGEVLIRVAAAGVNRADLLQRQGLYPPPPGASDILGLEVAGVVVAVGPGVTGWK 80
                        90       100       110       120       130       140       150       160
                ....*....|....*....|....*....|....*....|....*....|....*....|....*....|....*....|
gi 52783098 122 IGDRVMAFVNYNAWAEVVCTPVEFVYKIPDDMSFSEAAAFPMNFVTAYVMLFEVANLREGMSVLVHSAGGGVGQAVAQLC 201
Cdd:cd05276  81 VGDRVCALLAGGGYAEYVVVPAGQLLPVPEGLSLVEAAALPEVFFTAWQNLFQLGGLKAGETVLIHGGASGVGTAAIQLA 160
                       170       180       190       200       210       220       230       240
                ....*....|....*....|....*....|....*....|....*....|....*....|....*....|....*....|
gi 52783098 202 STVpNVTVFGTASTF-KHEAIKD-SVTHLFD-RNADYVQEVKRISA-EGVDIVLDCLCGDNTGKGLSLLKPLGTYILYGs 277
Cdd:cd05276 161 KAL-GARVIATAGSEeKLEACRAlGADVAINyRTEDFAEEVKEATGgRGVDVILDMVGGDYLARNLRALAPDGRLVLIG- 238
                       250       260       270       280       290       300       310       320
                ....*....|....*....|....*....|....*....|....*....|....*....|....*....|....*....|
gi 52783098 278 snMVTGETksffsfakswwqvekvnpiklyeenkviAGFSLLNLLFKQGR--------------AGLIRGVVEKLIGLYN 343
Cdd:cd05276 239 --LLGGAK----------------------------AELDLAPLLRKRLTltgstlrsrsleekAALAAAFREHVWPLFA 288
                       330       340       350
                ....*....|....*....|....*....|....*
gi 52783098 344 QKKIKPVVDSLWALEEVKEAMQRIHDRGNIGKLIL 378
Cdd:cd05276 289 SGRIRPVIDKVFPLEEAAEAHRRMESNEHIGKIVL 323
QOR1 cd08241
Quinone oxidoreductase (QOR); QOR catalyzes the conversion of a quinone + NAD(P)H to a ...
42-379 5.08e-74

Quinone oxidoreductase (QOR); QOR catalyzes the conversion of a quinone + NAD(P)H to a hydroquinone + NAD(P)+. Quinones are cyclic diones derived from aromatic compounds. Membrane bound QOR acts in the respiratory chains of bacteria and mitochondria, while soluble QOR acts to protect from toxic quinones (e.g. DT-diaphorase) or as a soluble eye-lens protein in some vertebrates (e.g. zeta-crystalin). QOR reduces quinones through a semi-quinone intermediate via a NAD(P)H-dependent single electron transfer. QOR is a member of the medium chain dehydrogenase/reductase family, but lacks the zinc-binding sites of the prototypical alcohol dehydrogenases of this group. NAD(P)(H)-dependent oxidoreductases are the major enzymes in the interconversion of alcohols and aldehydes, or ketones. Alcohol dehydrogenase in the liver converts ethanol and NAD+ to acetaldehyde and NADH, while in yeast and some other microorganisms ADH catalyzes the conversion acetaldehyde to ethanol in alcoholic fermentation. ADH is a member of the medium chain alcohol dehydrogenase family (MDR), which has a NAD(P)(H)-binding domain in a Rossmann fold of a beta-alpha form. The NAD(H)-binding region is comprised of 2 structurally similar halves, each of which contacts a mononucleotide. A GxGxxG motif after the first mononucleotide contact half allows the close contact of the coenzyme with the ADH backbone. The N-terminal catalytic domain has a distant homology to GroES. These proteins typically form dimers (typically higher plants, mammals) or tetramers (yeast, bacteria), and have 2 tightly bound zinc atoms per subunit, a catalytic zinc at the active site, and a structural zinc in a lobe of the catalytic domain. NAD(H)-binding occurs in the cleft between the catalytic and coenzyme-binding domains at the active site, and coenzyme binding induces a conformational closing of this cleft. Coenzyme binding typically precedes and contributes to substrate binding. In human ADH catalysis, the zinc ion helps coordinate the alcohol, followed by deprotonation of a histidine, the ribose of NAD, a serine, then the alcohol, which allows the transfer of a hydride to NAD+, creating NADH and a zinc-bound aldehyde or ketone. In yeast and some bacteria, the active site zinc binds an aldehyde, polarizing it, and leading to the reverse reaction.


Pssm-ID: 176203 [Multi-domain]  Cd Length: 323  Bit Score: 233.93  E-value: 5.08e-74
                        10        20        30        40        50        60        70        80
                ....*....|....*....|....*....|....*....|....*....|....*....|....*....|....*....|
gi 52783098  42 MRAVVLAGFGGLNKLRLfRKAMPEPQ-DGELKIRVKACGLNFIDLMVRQGNIDNPPKTPLVPGFECSGIVEALGDSVKGY 120
Cdd:cd08241   1 MKAVVCKELGGPEDLVL-EEVPPEPGaPGEVRIRVEAAGVNFPDLLMIQGKYQVKPPLPFVPGSEVAGVVEAVGEGVTGF 79
                        90       100       110       120       130       140       150       160
                ....*....|....*....|....*....|....*....|....*....|....*....|....*....|....*....|
gi 52783098 121 EIGDRVMAFVNYNAWAEVVCTPVEFVYKIPDDMSFSEAAAFPMNFVTAYVMLFEVANLREGMSVLVHSAGGGVGQAVAQL 200
Cdd:cd08241  80 KVGDRVVALTGQGGFAEEVVVPAAAVFPLPDGLSFEEAAALPVTYGTAYHALVRRARLQPGETVLVLGAAGGVGLAAVQL 159
                       170       180       190       200       210       220       230       240
                ....*....|....*....|....*....|....*....|....*....|....*....|....*....|....*....|
gi 52783098 201 cSTVPNVTVFGTASTF-KHEAIKDS-VTHLFD-RNADYVQEVKRISA-EGVDIVLDCLCGDNTGKGLSLLKPLGTYILYG 276
Cdd:cd08241 160 -AKALGARVIAAASSEeKLALARALgADHVIDyRDPDLRERVKALTGgRGVDVVYDPVGGDVFEASLRSLAWGGRLLVIG 238
                       250       260       270       280       290       300       310       320
                ....*....|....*....|....*....|....*....|....*....|....*....|....*....|....*....|
gi 52783098 277 ssnmvtgetksffsFAKSWWQVEKVNPIKLyeenKviaGFSLLNL---LFKQGRAGLIRGVVEKLIGLYNQKKIKPVVDS 353
Cdd:cd08241 239 --------------FASGEIPQIPANLLLL----K---NISVVGVywgAYARREPELLRANLAELFDLLAEGKIRPHVSA 297
                       330       340
                ....*....|....*....|....*.
gi 52783098 354 LWALEEVKEAMQRIHDRGNIGKLILD 379
Cdd:cd08241 298 VFPLEQAAEALRALADRKATGKVVLT 323
enoyl_red cd05195
enoyl reductase of polyketide synthase; Putative enoyl reductase of polyketide synthase. ...
69-378 2.98e-72

enoyl reductase of polyketide synthase; Putative enoyl reductase of polyketide synthase. Polyketide synthases produce polyketides in step by step mechanism that is similar to fatty acid synthesis. Enoyl reductase reduces a double to single bond. Erythromycin is one example of a polyketide generated by 3 complex enzymes (megasynthases). 2-enoyl thioester reductase (ETR) catalyzes the NADPH-dependent dependent conversion of trans-2-enoyl acyl carrier protein/coenzyme A (ACP/CoA) to acyl-(ACP/CoA) in fatty acid synthesis. 2-enoyl thioester reductase activity has been linked in Candida tropicalis as essential in maintaining mitiochondrial respiratory function. This ETR family is a part of the medium chain dehydrogenase/reductase family, but lack the zinc coordination sites characteristic of the alcohol dehydrogenases in this family. NAD(P)(H)-dependent oxidoreductases are the major enzymes in the interconversion of alcohols and aldehydes or ketones. Alcohol dehydrogenase in the liver converts ethanol and NAD+ to acetaldehyde and NADH, while in yeast and some other microorganisms ADH catalyzes the conversion acetaldehyde to ethanol in alcoholic fermentation. ADH is a member of the medium chain alcohol dehydrogenase family (MDR), which has a NAD(P)(H)-binding domain in a Rossmann fold of a beta-alpha form. The NAD(H)-binding region is comprised of 2 structurally similar halves, each of which contacts a mononucleotide. The N-terminal catalytic domain has a distant homology to GroES. These proteins typically form dimers (typically higher plants, mammals) or tetramers (yeast, bacteria), and have 2 tightly bound zinc atoms per subunit, a catalytic zinc at the active site, and a structural zinc in a lobe of the catalytic domain. NAD(H) binding occurs in the cleft between the catalytic and coenzyme-binding domains, at the active site, and coenzyme binding induces a conformational closing of this cleft. Coenzyme binding typically precedes and contributes to substrate binding.


Pssm-ID: 176179 [Multi-domain]  Cd Length: 293  Bit Score: 228.61  E-value: 2.98e-72
                        10        20        30        40        50        60        70        80
                ....*....|....*....|....*....|....*....|....*....|....*....|....*....|....*....|
gi 52783098  69 GELKIRVKACGLNFIDLMVRQGNIdnpPKTPLVPGFECSGIVEALGDSVKGYEIGDRVMAFVNyNAWAEVVCTPVEFVYK 148
Cdd:cd05195   1 DEVEVEVKAAGLNFRDVLVALGLL---PGDETPLGLECSGIVTRVGSGVTGLKVGDRVMGLAP-GAFATHVRVDARLVVK 76
                        90       100       110       120       130       140       150       160
                ....*....|....*....|....*....|....*....|....*....|....*....|....*....|....*....|
gi 52783098 149 IPDDMSFSEAAAFPMNFVTAYVMLFEVANLREGMSVLVHSAGGGVGQAVAQLCSTVpNVTVFGTASTF-KHEAIKD---S 224
Cdd:cd05195  77 IPDSLSFEEAATLPVAYLTAYYALVDLARLQKGESVLIHAAAGGVGQAAIQLAQHL-GAEVFATVGSEeKREFLRElggP 155
                       170       180       190       200       210       220       230       240
                ....*....|....*....|....*....|....*....|....*....|....*....|....*....|....*....|
gi 52783098 225 VTHLFD-RNADYVQEVKRISA-EGVDIVLDCLCGDNTGKGLSLLKPLGTYILYGSSNMVTGETKSFFSFAKswwqvekvn 302
Cdd:cd05195 156 VDHIFSsRDLSFADGILRATGgRGVDVVLNSLSGELLRASWRCLAPFGRFVEIGKRDILSNSKLGMRPFLR--------- 226
                       250       260       270       280       290       300       310
                ....*....|....*....|....*....|....*....|....*....|....*....|....*....|....*.
gi 52783098 303 piklyeeNKVIAGFSLLNLLfkQGRAGLIRGVVEKLIGLYNQKKIKPVVDSLWALEEVKEAMQRIHDRGNIGKLIL 378
Cdd:cd05195 227 -------NVSFSSVDLDQLA--RERPELLRELLREVLELLEAGVLKPLPPTVVPSASEIDAFRLMQSGKHIGKVVL 293
PKS_ER smart00829
Enoylreductase; Enoylreductase in Polyketide synthases.
73-378 9.36e-70

Enoylreductase; Enoylreductase in Polyketide synthases.


Pssm-ID: 214840 [Multi-domain]  Cd Length: 287  Bit Score: 221.88  E-value: 9.36e-70
                           10        20        30        40        50        60        70        80
                   ....*....|....*....|....*....|....*....|....*....|....*....|....*....|....*....|
gi 52783098     73 IRVKACGLNFIDLMVRQGNIDNPPktplVPGFECSGIVEALGDSVKGYEIGDRVMAFVNyNAWAEVVCTPVEFVYKIPDD 152
Cdd:smart00829   1 IEVRAAGLNFRDVLIALGLYPGEA----VLGGECAGVVTRVGPGVTGLAVGDRVMGLAP-GAFATRVVTDARLVVPIPDG 75
                           90       100       110       120       130       140       150       160
                   ....*....|....*....|....*....|....*....|....*....|....*....|....*....|....*....|
gi 52783098    153 MSFSEAAAFPMNFVTAYVMLFEVANLREGMSVLVHSAGGGVGQAVAQLCSTVpNVTVFGTAST-FKHEAIKD---SVTHL 228
Cdd:smart00829  76 WSFEEAATVPVVFLTAYYALVDLARLRPGESVLIHAAAGGVGQAAIQLARHL-GAEVFATAGSpEKRDFLRAlgiPDDHI 154
                          170       180       190       200       210       220       230       240
                   ....*....|....*....|....*....|....*....|....*....|....*....|....*....|....*....|
gi 52783098    229 FD-RNADYVQEVKRISA-EGVDIVLDCLCGDNTGKGLSLLKPLGTYILYGSSNMVTGETKSFFSFAKSwwqvekvnpikl 306
Cdd:smart00829 155 FSsRDLSFADEILRATGgRGVDVVLNSLSGEFLDASLRCLAPGGRFVEIGKRDIRDNSQLAMAPFRPN------------ 222
                          250       260       270       280       290       300       310
                   ....*....|....*....|....*....|....*....|....*....|....*....|....*....|..
gi 52783098    307 yeenkviAGFSLLNLLFKQGRAGLIRGVVEKLIGLYNQKKIKPVVDSLWALEEVKEAMQRIHDRGNIGKLIL 378
Cdd:smart00829 223 -------VSYHAVDLDALEEGPDRIRELLAEVLELFAEGVLRPLPVTVFPISDAEDAFRYMQQGKHIGKVVL 287
MDR_like_2 cd05289
alcohol dehydrogenase and quinone reductase-like medium chain degydrogenases/reductases; ...
42-378 3.14e-66

alcohol dehydrogenase and quinone reductase-like medium chain degydrogenases/reductases; Members identified as zinc-dependent alcohol dehydrogenases and quinone oxidoreductase. QOR catalyzes the conversion of a quinone + NAD(P)H to a hydroquinone + NAD(P)+. Quinones are cyclic diones derived from aromatic compounds. Membrane bound QOR actin the respiratory chains of bacteria and mitochondria, while soluble QOR acts to protect from toxic quinones (e.g. DT-diaphorase) or as a soluble eye-lens protein in some vertebrates (e.g. zeta-crystalin). QOR reduces quinones through a semi-quinone intermediate via a NAD(P)H-dependent single electron transfer. QOR is a member of the medium chain dehydrogenase/reductase family, but lacks the zinc-binding sites of the prototypical alcohol dehydrogenases of this group. NAD(P)(H)-dependent oxidoreductases are the major enzymes in the interconversion of alcohols and aldehydes, or ketones. Alcohol dehydrogenase in the liver converts ethanol and NAD+ to acetaldehyde and NADH, while in yeast and some other microorganisms ADH catalyzes the conversion acetaldehyde to ethanol in alcoholic fermentation. ADH is a member of the medium chain alcohol dehydrogenase family (MDR), which has a NAD(P)(H)-binding domain in a Rossmann fold of a beta-alpha form. The NAD(H)-binding region is comprised of 2 structurally similar halves, each of which contacts a mononucleotide. A GxGxxG motif after the first mononucleotide contact half allows the close contact of the coenzyme with the ADH backbone. The N-terminal catalytic domain has a distant homology to GroES. These proteins typically form dimers (typically higher plants, mammals) or tetramers (yeast, bacteria), and have 2 tightly bound zinc atoms per subunit, a catalytic zinc at the active site and a structural zinc in a lobe of the catalytic domain. NAD(H) binding occurs in the cleft between the catalytic and coenzyme-binding domains at the active site, and coenzyme binding induces a conformational closing of this cleft. Coenzyme binding typically precedes and contributes to substrate binding. In human ADH catalysis, the zinc ion helps coordinate the alcohol, followed by deprotonation of a histidine, the ribose of NAD, a serine, then the alcohol, which allows the transfer of a hydride to NAD+, creating NADH and a zinc-bound aldehyde or ketone. In yeast and some bacteria, the active site zinc binds an aldehyde, polarizing it, and leading to the reverse reaction.


Pssm-ID: 176191 [Multi-domain]  Cd Length: 309  Bit Score: 213.58  E-value: 3.14e-66
                        10        20        30        40        50        60        70        80
                ....*....|....*....|....*....|....*....|....*....|....*....|....*....|....*....|
gi 52783098  42 MRAVVLAGFGGLNKLRLFRKAMPEPQDGELKIRVKACGLNFIDLMVRQGNIDN--PPKTPLVPGFECSGIVEALGDSVKG 119
Cdd:cd05289   1 MKAVRIHEYGGPEVLELADVPTPEPGPGEVLVKVHAAGVNPVDLKIREGLLKAafPLTLPLIPGHDVAGVVVAVGPGVTG 80
                        90       100       110       120       130       140       150       160
                ....*....|....*....|....*....|....*....|....*....|....*....|....*....|....*....|
gi 52783098 120 YEIGDRVMAFVNYN---AWAEVVCTPVEFVYKIPDDMSFSEAAAFPMNFVTAYVMLFEVANLREGMSVLVHSAGGGVGQA 196
Cdd:cd05289  81 FKVGDEVFGMTPFTrggAYAEYVVVPADELALKPANLSFEEAAALPLAGLTAWQALFELGGLKAGQTVLIHGAAGGVGSF 160
                       170       180       190       200       210       220       230       240
                ....*....|....*....|....*....|....*....|....*....|....*....|....*....|....*....|
gi 52783098 197 VAQLCStVPNVTVFGTASTFKHEAIKDsvtHLFDRNADYVQE--VKRISAEGVDIVLDCLCGDNTGKGLSLLKPLGTYIl 274
Cdd:cd05289 161 AVQLAK-ARGARVIATASAANADFLRS---LGADEVIDYTKGdfERAAAPGGVDAVLDTVGGETLARSLALVKPGGRLV- 235
                       250       260       270       280       290       300       310       320
                ....*....|....*....|....*....|....*....|....*....|....*....|....*....|....*....|
gi 52783098 275 ygssnmvtgetkSFFSFAKSWWQVEKVNpiklyeenkVIAGFsllnLLFKQGRAGLirgvvEKLIGLYNQKKIKPVVDSL 354
Cdd:cd05289 236 ------------SIAGPPPAEQAAKRRG---------VRAGF----VFVEPDGEQL-----AELAELVEAGKLRPVVDRV 285
                       330       340
                ....*....|....*....|....
gi 52783098 355 WALEEVKEAMQRIHDRGNIGKLIL 378
Cdd:cd05289 286 FPLEDAAEAHERLESGHARGKVVL 309
MDR8 cd08273
Medium chain dehydrogenases/reductase (MDR)/zinc-dependent alcohol dehydrogenase-like family; ...
42-378 9.30e-64

Medium chain dehydrogenases/reductase (MDR)/zinc-dependent alcohol dehydrogenase-like family; This group is a member of the medium chain dehydrogenases/reductase (MDR)/zinc-dependent alcohol dehydrogenase-like family, but lacks the zinc-binding sites of the zinc-dependent alcohol dehydrogenases. The medium chain dehydrogenases/reductase (MDR)/zinc-dependent alcohol dehydrogenase-like family, which contains the zinc-dependent alcohol dehydrogenase (ADH-Zn) and related proteins, is a diverse group of proteins related to the first identified member, class I mammalian ADH. MDRs display a broad range of activities and are distinguished from the smaller short chain dehydrogenases (~ 250 amino acids vs. the ~ 350 amino acids of the MDR). The MDR proteins have 2 domains: a C-terminal NAD(P)-binding Rossmann fold domain of a beta-alpha form and an N-terminal catalytic domain with distant homology to GroES. The MDR group contains a host of activities, including the founding alcohol dehydrogenase (ADH), quinone reductase, sorbitol dehydrogenase, formaldehyde dehydrogenase, butanediol DH, ketose reductase, cinnamyl reductase, and numerous others. The zinc-dependent alcohol dehydrogenases (ADHs) catalyze the NAD(P)(H)-dependent interconversion of alcohols to aldehydes or ketones. Active site zinc has a catalytic role, while structural zinc aids in stability. ADH-like proteins typically form dimers (typically higher plants, mammals) or tetramers (yeast, bacteria), and generally have 2 tightly bound zinc atoms per subunit. The active site zinc is coordinated by a histidine, two cysteines, and a water molecule. The second zinc seems to play a structural role, affects subunit interactions, and is typically coordinated by 4 cysteines.


Pssm-ID: 176234 [Multi-domain]  Cd Length: 331  Bit Score: 207.89  E-value: 9.30e-64
                        10        20        30        40        50        60        70        80
                ....*....|....*....|....*....|....*....|....*....|....*....|....*....|....*....|
gi 52783098  42 MRAVVLAGFGGLNKLRLFRKAMPEPQDGELKIRVKACGLNFIDLMVRQGNIDNPPKTPLVPGFECSGIVEALGDSVKGYE 121
Cdd:cd08273   1 NREVVVTRRGGPEVLKVVEADLPEPAAGEVVVKVEASGVSFADVQMRRGLYPDQPPLPFTPGYDLVGRVDALGSGVTGFE 80
                        90       100       110       120       130       140       150       160
                ....*....|....*....|....*....|....*....|....*....|....*....|....*....|....*....|
gi 52783098 122 IGDRVMAFVNYNAWAEVVCTPVEFVYKIPDDMSFSEAAAFPMNFVTAYVMLFEVANLREGMSVLVHSAGGGVGQAVAQLC 201
Cdd:cd08273  81 VGDRVAALTRVGGNAEYINLDAKYLVPVPEGVDAAEAVCLVLNYVTAYQMLHRAAKVLTGQRVLIHGASGGVGQALLELA 160
                       170       180       190       200       210       220       230       240
                ....*....|....*....|....*....|....*....|....*....|....*....|....*....|....*....|
gi 52783098 202 sTVPNVTVFGTASTFKHEAIKDSVTHLFDRNADYVQEVkRISAEGVDIVLDCLCGDNTGKGLSLLKPLGTYILYGSSNMV 281
Cdd:cd08273 161 -LLAGAEVYGTASERNHAALRELGATPIDYRTKDWLPA-MLTPGGVDVVFDGVGGESYEESYAALAPGGTLVCYGGNSSL 238
                       250       260       270       280       290       300       310       320
                ....*....|....*....|....*....|....*....|....*....|....*....|....*....|....*....|
gi 52783098 282 TGETKsffSFAKSWWQVEKVNPIKLYEENKVIAGFSLLNLlfKQGRAGLIRGVVEKLIGLYNQKKIKPVVDSLWALEEVK 361
Cdd:cd08273 239 LQGRR---SLAALGSLLARLAKLKLLPTGRRATFYYVWRD--RAEDPKLFRQDLTELLDLLAKGKIRPKIAKRLPLSEVA 313
                       330
                ....*....|....*..
gi 52783098 362 EAMQRIHDRGNIGKLIL 378
Cdd:cd08273 314 EAHRLLESGKVVGKIVL 330
PTZ00354 PTZ00354
alcohol dehydrogenase; Provisional
42-385 4.83e-60

alcohol dehydrogenase; Provisional


Pssm-ID: 173547 [Multi-domain]  Cd Length: 334  Bit Score: 198.33  E-value: 4.83e-60
                         10        20        30        40        50        60        70        80
                 ....*....|....*....|....*....|....*....|....*....|....*....|....*....|....*....|
gi 52783098   42 MRAVVLAGFGGLNKLRLFRKAMPEPQDGELKIRVKACGLNFIDLMVRQGNIDNPPKTPLVPGFECSGIVEALGDSVKGYE 121
Cdd:PTZ00354   2 MRAVTLKGFGGVDVLKIGESPKPAPKRNDVLIKVSAAGVNRADTLQRQGKYPPPPGSSEILGLEVAGYVEDVGSDVKRFK 81
                         90       100       110       120       130       140       150       160
                 ....*....|....*....|....*....|....*....|....*....|....*....|....*....|....*....|
gi 52783098  122 IGDRVMAFVNYNAWAEVVCTPVEFVYKIPDDMSFSEAAAFPMNFVTAYVMLFEVANLREGMSVLVHSAGGGVGQAVAQLC 201
Cdd:PTZ00354  82 EGDRVMALLPGGGYAEYAVAHKGHVMHIPQGYTFEEAAAIPEAFLTAWQLLKKHGDVKKGQSVLIHAGASGVGTAAAQLA 161
                        170       180       190       200       210       220       230       240
                 ....*....|....*....|....*....|....*....|....*....|....*....|....*....|....*....|
gi 52783098  202 STVPNVTVFGTASTFKHEAIK---DSVTHLFDRNADYVQEVKR-ISAEGVDIVLDCLCGDNTGKGLSLLKPLGTYILYGs 277
Cdd:PTZ00354 162 EKYGAATIITTSSEEKVDFCKklaAIILIRYPDEEGFAPKVKKlTGEKGVNLVLDCVGGSYLSETAEVLAVDGKWIVYG- 240
                        250       260       270       280       290       300       310       320
                 ....*....|....*....|....*....|....*....|....*....|....*....|....*....|....*....|
gi 52783098  278 snmvtgetksFFSFAKswwqVEKVNPIKLY-EENKVIagFSLLNLLFKQGRAGLIRGVVEKLIGLYNQKKIKPVVDSLWA 356
Cdd:PTZ00354 241 ----------FMGGAK----VEKFNLLPLLrKRASII--FSTLRSRSDEYKADLVASFEREVLPYMEEGEIKPIVDRTYP 304
                        330       340
                 ....*....|....*....|....*....
gi 52783098  357 LEEVKEAMQRIHDRGNIGKLILDVEKTPT 385
Cdd:PTZ00354 305 LEEVAEAHTFLEQNKNIGKVVLTVNEPLS 333
MDR2 cd08268
Medium chain dehydrogenases/reductase (MDR)/zinc-dependent alcohol dehydrogenase-like family; ...
42-380 4.79e-59

Medium chain dehydrogenases/reductase (MDR)/zinc-dependent alcohol dehydrogenase-like family; This group is a member of the medium chain dehydrogenases/reductase (MDR)/zinc-dependent alcohol dehydrogenase-like family, but lacks the zinc-binding sites of the zinc-dependent alcohol dehydrogenases. The medium chain dehydrogenases/reductase (MDR)/zinc-dependent alcohol dehydrogenase-like family, which contains the zinc-dependent alcohol dehydrogenase (ADH-Zn) and related proteins, is a diverse group of proteins related to the first identified member, class I mammalian ADH. MDRs display a broad range of activities and are distinguished from the smaller short chain dehydrogenases (~ 250 amino acids vs. the ~ 350 amino acids of the MDR). The MDR proteins have 2 domains: a C-terminal NAD(P)-binding Rossmann fold domain of a beta-alpha form and an N-terminal catalytic domain with distant homology to GroES. The MDR group contains a host of activities, including the founding alcohol dehydrogenase (ADH), quinone reductase, sorbitol dehydrogenase, formaldehyde dehydrogenase, butanediol DH, ketose reductase, cinnamyl reductase, and numerous others. The zinc-dependent alcohol dehydrogenases (ADHs) catalyze the NAD(P)(H)-dependent interconversion of alcohols to aldehydes or ketones. Active site zinc has a catalytic role, while structural zinc aids in stability. ADH-like proteins typically form dimers (typically higher plants, mammals) or tetramers (yeast, bacteria), and generally have 2 tightly bound zinc atoms per subunit. The active site zinc is coordinated by a histidine, two cysteines, and a water molecule. The second zinc seems to play a structural role, affects subunit interactions, and is typically coordinated by 4 cysteines.


Pssm-ID: 176229 [Multi-domain]  Cd Length: 328  Bit Score: 195.51  E-value: 4.79e-59
                        10        20        30        40        50        60        70        80
                ....*....|....*....|....*....|....*....|....*....|....*....|....*....|....*....|
gi 52783098  42 MRAVVLAGFGGLNKLRLFRKAMPEPQDGELKIRVKACGLNFIDLMVRQGNIDNPPKTPLVPGFECSGIVEALGDSVKGYE 121
Cdd:cd08268   1 MRAVRFHQFGGPEVLRIEELPVPAPGAGEVLIRVEAIGLNRADAMFRRGAYIEPPPLPARLGYEAAGVVEAVGAGVTGFA 80
                        90       100       110       120       130       140       150       160
                ....*....|....*....|....*....|....*....|....*....|....*....|....*....|....*....|
gi 52783098 122 IGDRV-----MAFVNYNAWAEVVCTPVEFVYKIPDDMSFSEAAAFPMNFVTAYVMLFEVANLREGMSVLVHSAGGGVGQA 196
Cdd:cd08268  81 VGDRVsvipaADLGQYGTYAEYALVPAAAVVKLPDGLSFVEAAALWMQYLTAYGALVELAGLRPGDSVLITAASSSVGLA 160
                       170       180       190       200       210       220       230       240
                ....*....|....*....|....*....|....*....|....*....|....*....|....*....|....*....|
gi 52783098 197 VAQLCSTVPNVTVFGTASTFKHEAIKD-SVTHLFDR-NADYVQEVKRISA-EGVDIVLDCLCGDNTGKGLSLLKPLGTYI 273
Cdd:cd08268 161 AIQIANAAGATVIATTRTSEKRDALLAlGAAHVIVTdEEDLVAEVLRITGgKGVDVVFDPVGGPQFAKLADALAPGGTLV 240
                       250       260       270       280       290       300       310       320
                ....*....|....*....|....*....|....*....|....*....|....*....|....*....|....*....|
gi 52783098 274 LYGssnMVTGETKSF---FSFAKSWwqvekvnpiklyeenkVIAGFSLLNllFKQGRAGLIRGVVEKLIGLyNQKKIKPV 350
Cdd:cd08268 241 VYG---ALSGEPTPFplkAALKKSL----------------TFRGYSLDE--ITLDPEARRRAIAFILDGL-ASGALKPV 298
                       330       340       350
                ....*....|....*....|....*....|
gi 52783098 351 VDSLWALEEVKEAMQRIHDRGNIGKLILDV 380
Cdd:cd08268 299 VDRVFPFDDIVEAHRYLESGQQIGKIVVTP 328
zeta_crystallin cd08253
Zeta-crystallin with NADP-dependent quinone reductase activity (QOR); Zeta-crystallin is a eye ...
42-380 1.02e-58

Zeta-crystallin with NADP-dependent quinone reductase activity (QOR); Zeta-crystallin is a eye lens protein with NADP-dependent quinone reductase activity (QOR). It has been cited as a structural component in mammalian eyes, but also has homology to quinone reductases in unrelated species. QOR catalyzes the conversion of a quinone and NAD(P)H to a hydroquinone and NAD(P+. Quinones are cyclic diones derived from aromatic compounds. Membrane bound QOR acts in the respiratory chains of bacteria and mitochondria, while soluble QOR acts to protect from toxic quinones (e.g. DT-diaphorase) or as a soluble eye-lens protein in some vertebrates (e.g. zeta-crystalin). QOR reduces quinones through a semi-quinone intermediate via a NAD(P)H-dependent single electron transfer. QOR is a member of the medium chain dehydrogenase/reductase family, but lacks the zinc-binding sites of the prototypical alcohol dehydrogenases of this group. Alcohol dehydrogenase in the liver converts ethanol and NAD+ to acetaldehyde and NADH, while in yeast and some other microorganisms ADH catalyzes the conversion acetaldehyde to ethanol in alcoholic fermentation. ADH is a member of the medium chain alcohol dehydrogenase family (MDR), which has a NAD(P)(H)-binding domain in a Rossmann fold of a beta-alpha form. The NAD(H)-binding region is comprised of 2 structurally similar halves, each of which contacts a mononucleotide. The N-terminal catalytic domain has a distant homology to GroES. These proteins typically form dimers (typically higher plants, mammals) or tetramers (yeast, bacteria), and have 2 tightly bound zinc atoms per subunit, a catalytic zinc at the active site, and a structural zinc in a lobe of the catalytic domain. NAD(H)-binding occurs in the cleft between the catalytic and coenzyme-binding domains at the active site, and coenzyme binding induces a conformational closing of this cleft. Coenzyme binding typically precedes and contributes to substrate binding. In human ADH catalysis, the zinc ion helps coordinate the alcohol, followed by deprotonation of a histidine, the ribose of NAD, a serine, then the alcohol, which allows the transfer of a hydride to NAD+, creating NADH and a zinc-bound aldehyde or ketone. In yeast and some bacteria, the active site zinc binds an aldehyde, polarizing it, and leading to the reverse reaction.


Pssm-ID: 176215 [Multi-domain]  Cd Length: 325  Bit Score: 194.72  E-value: 1.02e-58
                        10        20        30        40        50        60        70        80
                ....*....|....*....|....*....|....*....|....*....|....*....|....*....|....*....|
gi 52783098  42 MRAVVLAGFGGLNKLRLFRKAMPEPQDGELKIRVKACGLNFIDLMVRQGNIDNPPKTPLVPGFECSGIVEALGDSVKGYE 121
Cdd:cd08253   1 MRAIRYHEFGAPDVLRLGDLPVPTPGPGEVLVRVHASGVNPVDTYIRAGAYPGLPPLPYVPGSDGAGVVEAVGEGVDGLK 80
                        90       100       110       120       130       140       150       160
                ....*....|....*....|....*....|....*....|....*....|....*....|....*....|....*....|
gi 52783098 122 IGDRVmaFVNYNAW-------AEVVCTPVEFVYKIPDDMSFSEAAAFPMNFVTAYVMLFEVANLREGMSVLVHSAGGGVG 194
Cdd:cd08253  81 VGDRV--WLTNLGWgrrqgtaAEYVVVPADQLVPLPDGVSFEQGAALGIPALTAYRALFHRAGAKAGETVLVHGGSGAVG 158
                       170       180       190       200       210       220       230       240
                ....*....|....*....|....*....|....*....|....*....|....*....|....*....|....*....|
gi 52783098 195 QAVAQLcSTVPNVTVFGTASTFKH-EAIKDSVTHL-FD-RNADYVQEVKRISA-EGVDIVLDCLCGDNTGKGLSLLKPLG 270
Cdd:cd08253 159 HAAVQL-ARWAGARVIATASSAEGaELVRQAGADAvFNyRAEDLADRILAATAgQGVDVIIEVLANVNLAKDLDVLAPGG 237
                       250       260       270       280       290       300       310       320
                ....*....|....*....|....*....|....*....|....*....|....*....|....*....|....*....|
gi 52783098 271 TYILYGSSNMvTGETksffsfakswwqveKVNPikLYEENKVIAGFSLLNLlfkqgRAGLIRGVVEKLIGLYNQKKIKPV 350
Cdd:cd08253 238 RIVVYGSGGL-RGTI--------------PINP--LMAKEASIRGVLLYTA-----TPEERAAAAEAIAAGLADGALRPV 295
                       330       340       350
                ....*....|....*....|....*....|
gi 52783098 351 VDSLWALEEVKEAMQRIHDRGNIGKLILDV 380
Cdd:cd08253 296 IAREYPLEEAAAAHEAVESGGAIGKVVLDP 325
QOR2 cd05286
Quinone oxidoreductase (QOR); Quinone oxidoreductase (QOR) and 2-haloacrylate reductase. QOR ...
43-378 1.05e-58

Quinone oxidoreductase (QOR); Quinone oxidoreductase (QOR) and 2-haloacrylate reductase. QOR catalyzes the conversion of a quinone + NAD(P)H to a hydroquinone + NAD(P)+. Quinones are cyclic diones derived from aromatic compounds. Membrane bound QOR actin the respiratory chains of bacteria and mitochondria, while soluble QOR acts to protect from toxic quinones (e.g. DT-diaphorase) or as a soluble eye-lens protein in some vertebrates (e.g. zeta-crystalin). QOR reduces quinones through a semi-quinone intermediate via a NAD(P)H-dependent single electron transfer. QOR is a member of the medium chain dehydrogenase/reductase family, but lacks the zinc-binding sites of the prototypical alcohol dehydrogenases of this group. 2-haloacrylate reductase, a member of this subgroup, catalyzes the NADPH-dependent reduction of a carbon-carbon double bond in organohalogen compounds. Although similar to QOR, Burkholderia 2-haloacrylate reductase does not act on the quinones 1,4-benzoquinone and 1,4-naphthoquinone. NAD(P)(H)-dependent oxidoreductases are the major enzymes in the interconversion of alcohols and aldehydes, or ketones. Alcohol dehydrogenase in the liver converts ethanol and NAD+ to acetaldehyde and NADH, while in yeast and some other microorganisms ADH catalyzes the conversion acetaldehyde to ethanol in alcoholic fermentation. ADH is a member of the medium chain alcohol dehydrogenase family (MDR), which have a NAD(P)(H)-binding domain in a Rossmann fold of a beta-alpha form. The NAD(H)-binding region is comprised of 2 structurally similar halves, each of which contacts a mononucleotide. A GxGxxG motif after the first mononucleotide contact half allows the close contact of the coenzyme with the ADH backbone. The N-terminal catalytic domain has a distant homology to GroES. These proteins typically form dimers (typically higher plants, mammals) or tetramers (yeast, bacteria), and have 2 tightly bound zinc atoms per subunit, a catalytic zinc at the active site and a structural zinc in a lobe of the catalytic domain. NAD(H) binding occurs in the cleft between the catalytic and coenzyme-binding domains at the active site, and coenzyme binding induces a conformational closing of this cleft. Coenzyme binding typically precedes and contributes to substrate binding. In human ADH catalysis, the zinc ion helps coordinate the alcohol, followed by deprotonation of a histidine, the ribose of NAD, a serine, then the alcohol, which allows the transfer of a hydride to NAD+, creating NADH and a zinc-bound aldehyde or ketone. In yeast and some bacteria, the active site zinc binds an aldehyde, polarizing it, and leading to the reverse reaction.


Pssm-ID: 176189 [Multi-domain]  Cd Length: 320  Bit Score: 194.20  E-value: 1.05e-58
                        10        20        30        40        50        60        70        80
                ....*....|....*....|....*....|....*....|....*....|....*....|....*....|....*....|
gi 52783098  43 RAVVLAGFGGLNKLRLFRKAMPEPQDGELKIRVKACGLNFIDLMVRQGNIdnPPKTPLVPGFECSGIVEALGDSVKGYEI 122
Cdd:cd05286   1 KAVRIHKTGGPEVLEYEDVPVPEPGPGEVLVRNTAIGVNFIDTYFRSGLY--PLPLPFVLGVEGAGVVEAVGPGVTGFKV 78
                        90       100       110       120       130       140       150       160
                ....*....|....*....|....*....|....*....|....*....|....*....|....*....|....*....|
gi 52783098 123 GDRVMAFVNYNAWAEVVCTPVEFVYKIPDDMSFSEAAAFPMNFVTAYVMLFEVANLREGMSVLVHSAGGGVGQAVAQLCS 202
Cdd:cd05286  79 GDRVAYAGPPGAYAEYRVVPASRLVKLPDGISDETAAALLLQGLTAHYLLRETYPVKPGDTVLVHAAAGGVGLLLTQWAK 158
                       170       180       190       200       210       220       230       240
                ....*....|....*....|....*....|....*....|....*....|....*....|....*....|....*....|
gi 52783098 203 TVpNVTVFGTASTF-KHEAIKDS-VTHLFD-RNADYVQEVKRISA-EGVDIVLDCLCGDNTGKGLSLLKPLGTYILYGSS 278
Cdd:cd05286 159 AL-GATVIGTVSSEeKAELARAAgADHVINyRDEDFVERVREITGgRGVDVVYDGVGKDTFEGSLDSLRPRGTLVSFGNA 237
                       250       260       270       280       290       300       310       320
                ....*....|....*....|....*....|....*....|....*....|....*....|....*....|....*....|
gi 52783098 279 nmvTGetksffsfakswwQVEKVNPIKLYEENKVIAGFSLLNllFKQGRAGLIRGvVEKLIGLYNQKKIKPVVDSLWALE 358
Cdd:cd05286 238 ---SG-------------PVPPFDLLRLSKGSLFLTRPSLFH--YIATREELLAR-AAELFDAVASGKLKVEIGKRYPLA 298
                       330       340
                ....*....|....*....|
gi 52783098 359 EVKEAMQRIHDRGNIGKLIL 378
Cdd:cd05286 299 DAAQAHRDLESRKTTGKLLL 318
quinone_pig3 TIGR02824
putative NAD(P)H quinone oxidoreductase, PIG3 family; Members of this family are putative ...
42-380 1.01e-55

putative NAD(P)H quinone oxidoreductase, PIG3 family; Members of this family are putative quinone oxidoreductases that belong to the broader superfamily (modeled by Pfam pfam00107) of zinc-dependent alcohol (of medium chain length) dehydrogenases and quinone oxiooreductases. The alignment shows no motif of conserved Cys residues as are found in zinc-binding members of the superfamily, and members are likely to be quinone oxidoreductases instead. A member of this family in Homo sapiens, PIG3, is induced by p53 but is otherwise uncharacterized. [Unknown function, Enzymes of unknown specificity]


Pssm-ID: 274316 [Multi-domain]  Cd Length: 325  Bit Score: 186.70  E-value: 1.01e-55
                          10        20        30        40        50        60        70        80
                  ....*....|....*....|....*....|....*....|....*....|....*....|....*....|....*....|
gi 52783098    42 MRAVVLAGFGGLNKLRLFRKAMPEPQDGELKIRVKACGLNFIDLMVRQGNIDNPPKTPLVPGFECSGIVEALGDSVKGYE 121
Cdd:TIGR02824   1 MKAIEITEPGGPEVLVLVEVPLPVPKAGEVLIRVAAAGVNRPDLLQRAGKYPPPPGASDILGLEVAGEVVAVGEGVSRWK 80
                          90       100       110       120       130       140       150       160
                  ....*....|....*....|....*....|....*....|....*....|....*....|....*....|....*....|
gi 52783098   122 IGDRVMAFVNYNAWAEVVCTPVEFVYKIPDDMSFSEAAAFPMNFVTAYVMLFEVANLREGMSVLVHSAGGGVGQAVAQLC 201
Cdd:TIGR02824  81 VGDRVCALVAGGGYAEYVAVPAGQVLPVPEGLSLVEAAALPETFFTVWSNLFQRGGLKAGETVLIHGGASGIGTTAIQLA 160
                         170       180       190       200       210       220       230       240
                  ....*....|....*....|....*....|....*....|....*....|....*....|....*....|....*....|
gi 52783098   202 STVpNVTVFGTA-STFKHEAIKD-SVTHLFD-RNADYVQEVKRISA-EGVDIVLDCLCGDNTGKGLSLLKPLGTYILYGS 277
Cdd:TIGR02824 161 KAF-GARVFTTAgSDEKCAACEAlGADIAINyREEDFVEVVKAETGgKGVDVILDIVGGSYLNRNIKALALDGRIVQIGF 239
                         250       260       270       280       290       300       310       320
                  ....*....|....*....|....*....|....*....|....*....|....*....|....*....|....*....|
gi 52783098   278 SNMVTGEtksffsfakswwqvekVNPIKLYEENKVIAGfSLLNLLFKQGRAGLIRGVVEKLIGLYNQKKIKPVVDSLWAL 357
Cdd:TIGR02824 240 QGGRKAE----------------LDLGPLLAKRLTITG-STLRARPVAEKAAIAAELREHVWPLLASGRVRPVIDKVFPL 302
                         330       340
                  ....*....|....*....|...
gi 52783098   358 EEVKEAMQRIHDRGNIGKLILDV 380
Cdd:TIGR02824 303 EDAAQAHALMESGDHIGKIVLTV 325
Zn_ADH_like1 cd08266
Alcohol dehydrogenases of the MDR family; This group contains proteins related to the ...
42-380 1.19e-55

Alcohol dehydrogenases of the MDR family; This group contains proteins related to the zinc-dependent alcohol dehydrogenases. However, while the group has structural zinc site characteristic of these enzymes, it lacks the consensus site for a catalytic zinc. NAD(P)(H)-dependent oxidoreductases are the major enzymes in the interconversion of alcohols and aldehydes, or ketones. Alcohol dehydrogenase in the liver converts ethanol and NAD+ to acetaldehyde and NADH, while in yeast and some other microorganisms ADH catalyzes the conversion acetaldehyde to ethanol in alcoholic fermentation. ADH is a member of the medium chain alcohol dehydrogenase family (MDR), which has a NAD(P)(H)-binding domain in a Rossmann fold of a beta-alpha form. The NAD(H)-binding region is comprised of 2 structurally similar halves, each of which contacts a mononucleotide. A GxGxxG motif after the first mononucleotide contact half allows the close contact of the coenzyme with the ADH backbone. The N-terminal catalytic domain has a distant homology to GroES. These proteins typically form dimers (typically higher plants, mammals) or tetramers (yeast, bacteria), and have 2 tightly bound zinc atoms per subunit, a catalytic zinc at the active site, and a structural zinc in a lobe of the catalytic domain. NAD(H)-binding occurs in the cleft between the catalytic and coenzyme-binding domains at the active site, and coenzyme binding induces a conformational closing of this cleft. Coenzyme binding typically precedes and contributes to substrate binding. In human ADH catalysis, the zinc ion helps coordinate the alcohol, followed by deprotonation of a histidine, the ribose of NAD, a serine, then the alcohol, which allows the transfer of a hydride to NAD+, creating NADH and a zinc-bound aldehyde or ketone. In yeast and some bacteria, the active site zinc binds an aldehyde, polarizing it, and leading to the reverse reaction.


Pssm-ID: 176227 [Multi-domain]  Cd Length: 342  Bit Score: 187.08  E-value: 1.19e-55
                        10        20        30        40        50        60        70        80
                ....*....|....*....|....*....|....*....|....*....|....*....|....*....|....*....|
gi 52783098  42 MRAVVLAGFGGLNKLRLFRKAMPEPQDGELKIRVKACGLNFIDLMVRQGNIDNPPKTPLVPGFECSGIVEALGDSVKGYE 121
Cdd:cd08266   1 MKAVVIRGHGGPEVLEYGDLPEPEPGPDEVLVRVKAAALNHLDLWVRRGMPGIKLPLPHILGSDGAGVVEAVGPGVTNVK 80
                        90       100       110       120       130       140       150       160
                ....*....|....*....|....*....|....*....|....*....|....*....|....*....|....*....|
gi 52783098 122 IGDRVMAFVNYN---------------------------AWAEVVCTPVEFVYKIPDDMSFSEAAAFPMNFVTAYVMLFE 174
Cdd:cd08266  81 PGQRVVIYPGIScgrceyclagrenlcaqygilgehvdgGYAEYVAVPARNLLPIPDNLSFEEAAAAPLTFLTAWHMLVT 160
                       170       180       190       200       210       220       230       240
                ....*....|....*....|....*....|....*....|....*....|....*....|....*....|....*....|
gi 52783098 175 VANLREGMSVLVHSAGGGVGQAVAQLCSTVpNVTVFGTASTF-KHEAIKD-SVTHLFD-RNADYVQEVKRI-SAEGVDIV 250
Cdd:cd08266 161 RARLRPGETVLVHGAGSGVGSAAIQIAKLF-GATVIATAGSEdKLERAKElGADYVIDyRKEDFVREVRELtGKRGVDVV 239
                       250       260       270       280       290       300       310       320
                ....*....|....*....|....*....|....*....|....*....|....*....|....*....|....*....|
gi 52783098 251 LDCLCGDNTGKGLSLLKPLGTYILYGSSNMVTGETKSFFSFAKSWwqvekvnpiklyeenkviagfsllNLLfkqGRAGL 330
Cdd:cd08266 240 VEHVGAATWEKSLKSLARGGRLVTCGATTGYEAPIDLRHVFWRQL------------------------SIL---GSTMG 292
                       330       340       350       360       370
                ....*....|....*....|....*....|....*....|....*....|
gi 52783098 331 IRGVVEKLIGLYNQKKIKPVVDSLWALEEVKEAMQRIHDRGNIGKLILDV 380
Cdd:cd08266 293 TKAELDEALRLVFRGKLKPVIDSVFPLEEAAEAHRRLESREQFGKIVLTP 342
polyketide_synthase cd08251
polyketide synthase; Polyketide synthases produce polyketides in step by step mechanism that ...
62-378 2.68e-51

polyketide synthase; Polyketide synthases produce polyketides in step by step mechanism that is similar to fatty acid synthesis. Enoyl reductase reduces a double to single bond. Erythromycin is one example of a polyketide generated by 3 complex enzymes (megasynthases). 2-enoyl thioester reductase (ETR) catalyzes the NADPH-dependent dependent conversion of trans-2-enoyl acyl carrier protein/coenzyme A (ACP/CoA) to acyl-(ACP/CoA) in fatty acid synthesis. 2-enoyl thioester reductase activity has been linked in Candida tropicalis as essential in maintaining mitiochondrial respiratory function. This ETR family is a part of the medium chain dehydrogenase/reductase family, but lack the zinc coordination sites characteristic of the alcohol dehydrogenases in this family. NAD(P)(H)-dependent oxidoreductases are the major enzymes in the interconversion of alcohols and aldehydes, or ketones. Alcohol dehydrogenase in the liver converts ethanol and NAD+ to acetaldehyde and NADH, while in yeast and some other microorganisms ADH catalyzes the conversion acetaldehyde to ethanol in alcoholic fermentation. ADH is a member of the medium chain alcohol dehydrogenase family (MDR), which have a NAD(P)(H)-binding domain in a Rossmann fold of a beta-alpha form. The NAD(H)-binding region is comprised of 2 structurally similar halves, each of which contacts a mononucleotide. The N-terminal catalytic domain has a distant homology to GroES. These proteins typically form dimers (typically higher plants, mammals) or tetramers (yeast, bacteria), and have 2 tightly bound zinc atoms per subunit, a catalytic zinc at the active site, and a structural zinc in a lobe of the catalytic domain. NAD(H)-binding occurs in the cleft between the catalytic and coenzyme-binding domains at the active site, and coenzyme binding induces a conformational closing of this cleft. Coenzyme binding typically precedes and contributes to substrate binding.


Pssm-ID: 176213 [Multi-domain]  Cd Length: 303  Bit Score: 174.54  E-value: 2.68e-51
                        10        20        30        40        50        60        70        80
                ....*....|....*....|....*....|....*....|....*....|....*....|....*....|....*....|
gi 52783098  62 AMPEPQDGELKIRVKACGLNFIDLMVRQGNIDNPPKTPLVPGFECSGIVEALGDSVKGYEIGDRVMAF--VNYNAWAEVV 139
Cdd:cd08251   1 EVAPPGPGEVRIQVRAFSLNFGDLLCVRGLYPTMPPYPFTPGFEASGVVRAVGPHVTRLAVGDEVIAGtgESMGGHATLV 80
                        90       100       110       120       130       140       150       160
                ....*....|....*....|....*....|....*....|....*....|....*....|....*....|....*....|
gi 52783098 140 CTPVEFVYKIPDDMSFSEAAAFPMNFVTAYvMLFEVANLREGMSVLVHSAGGGVGQAVAQLcSTVPNVTVFGTAST-FKH 218
Cdd:cd08251  81 TVPEDQVVRKPASLSFEEACALPVVFLTVI-DAFARAGLAKGEHILIQTATGGTGLMAVQL-ARLKGAEIYATASSdDKL 158
                       170       180       190       200       210       220       230       240
                ....*....|....*....|....*....|....*....|....*....|....*....|....*....|....*....|
gi 52783098 219 EAIKD-SVTHLFD-RNADYVQEVKRISA-EGVDIVLDCLCGDNTGKGLSLLKPLGTYILYGSSNMVTGETKSFFSFAksw 295
Cdd:cd08251 159 EYLKQlGVPHVINyVEEDFEEEIMRLTGgRGVDVVINTLSGEAIQKGLNCLAPGGRYVEIAMTALKSAPSVDLSVLS--- 235
                       250       260       270       280       290       300       310       320
                ....*....|....*....|....*....|....*....|....*....|....*....|....*....|....*....|
gi 52783098 296 wqvekvnpiklyeENKVIAGFSLLNLLFkqGRAGLIRGVVEKLIGLYNQKKIKPVVDSLWALEEVKEAMQRIHDRGNIGK 375
Cdd:cd08251 236 -------------NNQSFHSVDLRKLLL--LDPEFIADYQAEMVSLVEEGELRPTVSRIFPFDDIGEAYRYLSDRENIGK 300

                ...
gi 52783098 376 LIL 378
Cdd:cd08251 301 VVV 303
MDR6 cd08272
Medium chain dehydrogenases/reductase (MDR)/zinc-dependent alcohol dehydrogenase-like family; ...
42-380 3.70e-51

Medium chain dehydrogenases/reductase (MDR)/zinc-dependent alcohol dehydrogenase-like family; This group is a member of the medium chain dehydrogenases/reductase (MDR)/zinc-dependent alcohol dehydrogenase-like family, but lacks the zinc-binding sites of the zinc-dependent alcohol dehydrogenases. The medium chain dehydrogenases/reductase (MDR)/zinc-dependent alcohol dehydrogenase-like family, which contains the zinc-dependent alcohol dehydrogenase (ADH-Zn) and related proteins, is a diverse group of proteins related to the first identified member, class I mammalian ADH. MDRs display a broad range of activities and are distinguished from the smaller short chain dehydrogenases (~ 250 amino acids vs. the ~ 350 amino acids of the MDR). The MDR proteins have 2 domains: a C-terminal NAD(P)-binding Rossmann fold domain of a beta-alpha form and an N-terminal catalytic domain with distant homology to GroES. The MDR group contains a host of activities, including the founding alcohol dehydrogenase (ADH), quinone reductase, sorbitol dehydrogenase, formaldehyde dehydrogenase, butanediol DH, ketose reductase, cinnamyl reductase, and numerous others. The zinc-dependent alcohol dehydrogenases (ADHs) catalyze the NAD(P)(H)-dependent interconversion of alcohols to aldehydes or ketones. Active site zinc has a catalytic role, while structural zinc aids in stability. ADH-like proteins typically form dimers (typically higher plants, mammals) or tetramers (yeast, bacteria), and generally have 2 tightly bound zinc atoms per subunit. The active site zinc is coordinated by a histidine, two cysteines, and a water molecule. The second zinc seems to play a structural role, affects subunit interactions, and is typically coordinated by 4 cysteines.


Pssm-ID: 176233 [Multi-domain]  Cd Length: 326  Bit Score: 174.67  E-value: 3.70e-51
                        10        20        30        40        50        60        70        80
                ....*....|....*....|....*....|....*....|....*....|....*....|....*....|....*....|
gi 52783098  42 MRAVVLAGFGGLNKLRLFRKAMPEPQDGELKIRVKACGLNFIDLMVRQGNIDNPPKTPLVPGFECSGIVEALGDSVKGYE 121
Cdd:cd08272   1 MKALVLESFGGPEVFELREVPRPQPGPGQVLVRVHASGVNPLDTKIRRGGAAARPPLPAILGCDVAGVVEAVGEGVTRFR 80
                        90       100       110       120       130       140       150       160
                ....*....|....*....|....*....|....*....|....*....|....*....|....*....|....*....|
gi 52783098 122 IGDRVMAFVN-----YNAWAEVVCTPVEFVYKIPDDMSFSEAAAFPMNFVTAYVMLFEVANLREGMSVLVHSAGGGVGQA 196
Cdd:cd08272  81 VGDEVYGCAGglgglQGSLAEYAVVDARLLALKPANLSMREAAALPLVGITAWEGLVDRAAVQAGQTVLIHGGAGGVGHV 160
                       170       180       190       200       210       220       230       240
                ....*....|....*....|....*....|....*....|....*....|....*....|....*....|....*....|
gi 52783098 197 VAQLCSTVpNVTVFGTASTFKHEAIKD-SVTHLFDRNADYVQEV-KRISAEGVDIVLDCLCGDNTGKGLSLLKPLGTyil 274
Cdd:cd08272 161 AVQLAKAA-GARVYATASSEKAAFARSlGADPIIYYRETVVEYVaEHTGGRGFDVVFDTVGGETLDASFEAVALYGR--- 236
                       250       260       270       280       290       300       310       320
                ....*....|....*....|....*....|....*....|....*....|....*....|....*....|....*....|
gi 52783098 275 ygssnMVTgetksffsfAKSWWQvEKVNPikLYEENKVIAG-FSLLNLLFKQGRAGLiRGVVEKLIGLYNQKKIKPVVDS 353
Cdd:cd08272 237 -----VVS---------ILGGAT-HDLAP--LSFRNATYSGvFTLLPLLTGEGRAHH-GEILREAARLVERGQLRPLLDP 298
                       330       340
                ....*....|....*....|....*...
gi 52783098 354 L-WALEEVKEAMQRIHDRGNIGKLILDV 380
Cdd:cd08272 299 RtFPLEEAAAAHARLESGSARGKIVIDV 326
MDR9 cd08274
Medium chain dehydrogenases/reductase (MDR)/zinc-dependent alcohol dehydrogenase-like family; ...
42-378 4.40e-49

Medium chain dehydrogenases/reductase (MDR)/zinc-dependent alcohol dehydrogenase-like family; This group is a member of the medium chain dehydrogenases/reductase (MDR)/zinc-dependent alcohol dehydrogenase-like family, but lacks the zinc-binding sites of the zinc-dependent alcohol dehydrogenases. The medium chain dehydrogenases/reductase (MDR)/zinc-dependent alcohol dehydrogenase-like family, which contains the zinc-dependent alcohol dehydrogenase (ADH-Zn) and related proteins, is a diverse group of proteins related to the first identified member, class I mammalian ADH. MDRs display a broad range of activities and are distinguished from the smaller short chain dehydrogenases (~ 250 amino acids vs. the ~ 350 amino acids of the MDR). The MDR proteins have 2 domains: a C-terminal NAD(P)-binding Rossmann fold domain of a beta-alpha form and an N-terminal catalytic domain with distant homology to GroES. The MDR group contains a host of activities, including the founding alcohol dehydrogenase (ADH), quinone reductase, sorbitol dehydrogenase, formaldehyde dehydrogenase, butanediol DH, ketose reductase, cinnamyl reductase, and numerous others. The zinc-dependent alcohol dehydrogenases (ADHs) catalyze the NAD(P)(H)-dependent interconversion of alcohols to aldehydes or ketones. Active site zinc has a catalytic role, while structural zinc aids in stability. ADH-like proteins typically form dimers (typically higher plants, mammals) or tetramers (yeast, bacteria), and generally have 2 tightly bound zinc atoms per subunit. The active site zinc is coordinated by a histidine, two cysteines, and a water molecule. The second zinc seems to play a structural role, affects subunit interactions, and is typically coordinated by 4 cysteines.


Pssm-ID: 176235 [Multi-domain]  Cd Length: 350  Bit Score: 170.17  E-value: 4.40e-49
                        10        20        30        40        50        60        70        80
                ....*....|....*....|....*....|....*....|....*....|....*....|....*....|....*....|
gi 52783098  42 MRAVVLAGFGGLNKLRlFR--KAMPEPQDGELKIRVKACGLNFIDLMVRQG----NID---------------NPPKTPL 100
Cdd:cd08274   1 MRAVLLTGHGGLDKLV-YRddVPVPTPAPGEVLIRVGACGVNNTDINTREGwystEVDgatdstgageagwwgGTLSFPR 79
                        90       100       110       120       130       140       150       160
                ....*....|....*....|....*....|....*....|....*....|....*....|....*....|....*....|
gi 52783098 101 VPGFECSGIVEALGDSVKGYEIGDRVMAFVN---------YNAW----------AEVVCTPVEFVYKIPDDMSFSEAAAF 161
Cdd:cd08274  80 IQGADIVGRVVAVGEGVDTARIGERVLVDPSirdppeddpADIDyigserdggfAEYTVVPAENAYPVNSPLSDVELATF 159
                       170       180       190       200       210       220       230       240
                ....*....|....*....|....*....|....*....|....*....|....*....|....*....|....*....|
gi 52783098 162 PMNFVTAYVMLfEVANLREGMSVLVHSAGGGVGQAVAQLCSTVpNVTVFGTASTFKHEAIKD-SVTHLFDRNADYVQEVK 240
Cdd:cd08274 160 PCSYSTAENML-ERAGVGAGETVLVTGASGGVGSALVQLAKRR-GAIVIAVAGAAKEEAVRAlGADTVILRDAPLLADAK 237
                       250       260       270       280       290       300       310       320
                ....*....|....*....|....*....|....*....|....*....|....*....|....*....|....*....|
gi 52783098 241 RISAEGVDIVLDCLCGDNTGKGLSLLKPLGTYILYGSSnmvtgetksffsfakswwqvekVNPI------KLYEENKVIA 314
Cdd:cd08274 238 ALGGEPVDVVADVVGGPLFPDLLRLLRPGGRYVTAGAI----------------------AGPVveldlrTLYLKDLTLF 295
                       330       340       350       360       370       380
                ....*....|....*....|....*....|....*....|....*....|....*....|....
gi 52783098 315 GFSLLNllfkqgragliRGVVEKLIGLYNQKKIKPVVDSLWALEEVKEAMQRIHDRGNIGKLIL 378
Cdd:cd08274 296 GSTLGT-----------REVFRRLVRYIEEGEIRPVVAKTFPLSEIREAQAEFLEKRHVGKLVL 348
MDR1 cd08267
Medium chain dehydrogenases/reductase (MDR)/zinc-dependent alcohol dehydrogenase-like family; ...
45-378 3.10e-45

Medium chain dehydrogenases/reductase (MDR)/zinc-dependent alcohol dehydrogenase-like family; This group is a member of the medium chain dehydrogenases/reductase (MDR)/zinc-dependent alcohol dehydrogenase-like family, but lacks the zinc-binding sites of the zinc-dependent alcohol dehydrogenases. The medium chain dehydrogenases/reductase (MDR)/zinc-dependent alcohol dehydrogenase-like family, which contains the zinc-dependent alcohol dehydrogenase (ADH-Zn) and related proteins, is a diverse group of proteins related to the first identified member, class I mammalian ADH. MDRs display a broad range of activities and are distinguished from the smaller short chain dehydrogenases (~ 250 amino acids vs. the ~ 350 amino acids of the MDR). The MDR proteins have 2 domains: a C-terminal NAD(P)-binding Rossmann fold domain of a beta-alpha form and an N-terminal catalytic domain with distant homology to GroES. The MDR group contains a host of activities, including the founding alcohol dehydrogenase (ADH), quinone reductase, sorbitol dehydrogenase, formaldehyde dehydrogenase, butanediol DH, ketose reductase, cinnamyl reductase, and numerous others. The zinc-dependent alcohol dehydrogenases (ADHs) catalyze the NAD(P)(H)-dependent interconversion of alcohols to aldehydes or ketones. Active site zinc has a catalytic role, while structural zinc aids in stability. ADH-like proteins typically form dimers (typically higher plants, mammals) or tetramers (yeast, bacteria), and generally have 2 tightly bound zinc atoms per subunit. The active site zinc is coordinated by a histidine, two cysteines, and a water molecule. The second zinc seems to play a structural role, affects subunit interactions, and is typically coordinated by 4 cysteines.


Pssm-ID: 176228 [Multi-domain]  Cd Length: 319  Bit Score: 158.92  E-value: 3.10e-45
                        10        20        30        40        50        60        70        80
                ....*....|....*....|....*....|....*....|....*....|....*....|....*....|....*....|
gi 52783098  45 VVLAGFGGLNKLRLF--RKAMPEPQDGELKIRVKACGLNFIDLMVRQG--NIDNPPKTPLVPGFECSGIVEALGDSVKGY 120
Cdd:cd08267   1 VVYTRYGSPEVLLLLevEVPIPTPKPGEVLVKVHAASVNPVDWKLRRGppKLLLGRPFPPIPGMDFAGEVVAVGSGVTRF 80
                        90       100       110       120       130       140       150       160
                ....*....|....*....|....*....|....*....|....*....|....*....|....*....|....*....|
gi 52783098 121 EIGDRVMAFVNYN---AWAEVVCTPVEFVYKIPDDMSFSEAAAFPMNFVTAYVMLFEVANLREGMSVLVHSAGGGVGQAV 197
Cdd:cd08267  81 KVGDEVFGRLPPKgggALAEYVVAPESGLAKKPEGVSFEEAAALPVAGLTALQALRDAGKVKPGQRVLINGASGGVGTFA 160
                       170       180       190       200       210       220       230       240
                ....*....|....*....|....*....|....*....|....*....|....*....|....*....|....*....|
gi 52783098 198 AQLCSTVpNVTVFGTASTFKHEAIKDS-VTHLFD-RNADYVQEVKriSAEGVDIVLDCLCGDNTG--KGLSLLKPLGTYI 273
Cdd:cd08267 161 VQIAKAL-GAHVTGVCSTRNAELVRSLgADEVIDyTTEDFVALTA--GGEKYDVIFDAVGNSPFSlyRASLALKPGGRYV 237
                       250       260       270       280       290       300       310       320
                ....*....|....*....|....*....|....*....|....*....|....*....|....*....|....*....|
gi 52783098 274 lygssnMVTGETKSFFSFAKSWWqvekvnpiklyeenkVIAGFS---LLNLLFKQGRAGLirgvvEKLIGLYNQKKIKPV 350
Cdd:cd08267 238 ------SVGGGPSGLLLVLLLLP---------------LTLGGGgrrLKFFLAKPNAEDL-----EQLAELVEEGKLKPV 291
                       330       340
                ....*....|....*....|....*...
gi 52783098 351 VDSLWALEEVKEAMQRIHDRGNIGKLIL 378
Cdd:cd08267 292 IDSVYPLEDAPEAYRRLKSGRARGKVVI 319
ETR_like cd05282
2-enoyl thioester reductase-like; 2-enoyl thioester reductase (ETR) catalyzes the ...
45-379 3.49e-44

2-enoyl thioester reductase-like; 2-enoyl thioester reductase (ETR) catalyzes the NADPH-dependent conversion of trans-2-enoyl acyl carrier protein/coenzyme A (ACP/CoA) to acyl-(ACP/CoA) in fatty acid synthesis. 2-enoyl thioester reductase activity has been linked in Candida tropicalis as essential in maintaining mitiochondrial respiratory function. This ETR family is a part of the medium chain dehydrogenase/reductase family, but lack the zinc coordination sites characteristic of the alcohol dehydrogenases in this family. NAD(P)(H)-dependent oxidoreductases are the major enzymes in the interconversion of alcohols and aldehydes, or ketones. Alcohol dehydrogenase in the liver converts ethanol and NAD+ to acetaldehyde and NADH, while in yeast and some other microorganisms ADH catalyzes the conversion acetaldehyde to ethanol in alcoholic fermentation. ADH is a member of the medium chain alcohol dehydrogenase family (MDR), which has a NAD(P)(H)-binding domain in a Rossmann fold of a beta-alpha form. The NAD(H)-binding region is comprised of 2 structurally similar halves, each of which contacts a mononucleotide. The N-terminal catalytic domain has a distant homology to GroES. These proteins typically form dimers (typically higher plants, mammals) or tetramers (yeast, bacteria), and have 2 tightly bound zinc atoms per subunit, a catalytic zinc at the active site and a structural zinc in a lobe of the catalytic domain. NAD(H) binding occurs in the cleft between the catalytic and coenzyme-binding domains at the active site, and coenzyme binding induces a conformational closing of this cleft. Coenzyme binding typically precedes and contributes to substrate binding. Candida tropicalis enoyl thioester reductase (Etr1p) catalyzes the NADPH-dependent reduction of trans-2-enoyl thioesters in mitochondrial fatty acid synthesis. Etr1p forms homodimers with each subunit containing a nucleotide-binding Rossmann fold domain and a catalytic domain.


Pssm-ID: 176645 [Multi-domain]  Cd Length: 323  Bit Score: 156.28  E-value: 3.49e-44
                        10        20        30        40        50        60        70        80
                ....*....|....*....|....*....|....*....|....*....|....*....|....*....|....*....|
gi 52783098  45 VVLAGFGGLNKLRLFR--KAMPEPQDGELKIRVKACGLNFIDLMVRQGNIDNPPKTPLVPGFECSGIVEALGDSVKGYEI 122
Cdd:cd05282   1 VVYTQFGEPLPLVLELvsLPIPPPGPGEVLVRMLAAPINPSDLITISGAYGSRPPLPAVPGNEGVGVVVEVGSGVSGLLV 80
                        90       100       110       120       130       140       150       160
                ....*....|....*....|....*....|....*....|....*....|....*....|....*....|....*....|
gi 52783098 123 GDRVMAFVNYNAWAEVVCTPVEFVYKIPDDMSFSEAAAFPMNFVTAYVMLFEVANLREGMSVLVHSAGGGVGQAVAQLCS 202
Cdd:cd05282  81 GQRVLPLGGEGTWQEYVVAPADDLIPVPDSISDEQAAMLYINPLTAWLMLTEYLKLPPGDWVIQNAANSAVGRMLIQLAK 160
                       170       180       190       200       210       220       230       240
                ....*....|....*....|....*....|....*....|....*....|....*....|....*....|....*....|
gi 52783098 203 ----TVPNVTVfgtastfKHEAI-------KDSVthLFDRNADYVQEVKRISAE-GVDIVLDCLCGDNTGKGLSLLKPLG 270
Cdd:cd05282 161 llgfKTINVVR-------RDEQVeelkalgADEV--IDSSPEDLAQRVKEATGGaGARLALDAVGGESATRLARSLRPGG 231
                       250       260       270       280       290       300       310       320
                ....*....|....*....|....*....|....*....|....*....|....*....|....*....|....*....|
gi 52783098 271 TYILYGSSnmvTGETKSFfsfakswwqvekvNPIKLYEENKVIAGFSLLNLLFKQGRAgLIRGVVEKLIGLYNQKKIKPV 350
Cdd:cd05282 232 TLVNYGLL---SGEPVPF-------------PRSVFIFKDITVRGFWLRQWLHSATKE-AKQETFAEVIKLVEAGVLTTP 294
                       330       340
                ....*....|....*....|....*....
gi 52783098 351 VDSLWALEEVKEAMQRIHDRGNIGKLILD 379
Cdd:cd05282 295 VGAKFPLEDFEEAVAAAEQPGRGGKVLLT 323
MDR cd05188
Medium chain reductase/dehydrogenase (MDR)/zinc-dependent alcohol dehydrogenase-like family; ...
70-276 9.80e-44

Medium chain reductase/dehydrogenase (MDR)/zinc-dependent alcohol dehydrogenase-like family; The medium chain reductase/dehydrogenases (MDR)/zinc-dependent alcohol dehydrogenase-like family, which contains the zinc-dependent alcohol dehydrogenase (ADH-Zn) and related proteins, is a diverse group of proteins related to the first identified member, class I mammalian ADH. MDRs display a broad range of activities and are distinguished from the smaller short chain dehydrogenases (~ 250 amino acids vs. the ~ 350 amino acids of the MDR). The MDR proteins have 2 domains: a C-terminal NAD(P) binding-Rossmann fold domain of a beta-alpha form and an N-terminal catalytic domain with distant homology to GroES. The MDR group contains a host of activities, including the founding alcohol dehydrogenase (ADH) , quinone reductase, sorbitol dehydrogenase, formaldehyde dehydrogenase, butanediol DH, ketose reductase, cinnamyl reductase, and numerous others. The zinc-dependent alcohol dehydrogenases (ADHs) catalyze the NAD(P)(H)-dependent interconversion of alcohols to aldehydes or ketones. ADH-like proteins typically form dimers (typically higher plants, mammals) or tetramers (yeast, bacteria), and generally have 2 tightly bound zinc atoms per subunit, a catalytic zinc at the active site and a structural zinc in a lobe of the catalytic domain. The active site zinc is coordinated by a histidine, two cysteines, and a water molecule. The second zinc seems to play a structural role, affects subunit interactions, and is typically coordinated by 4 cysteines. Other MDR members have only a catalytic zinc, and some contain no coordinated zinc.


Pssm-ID: 176178 [Multi-domain]  Cd Length: 271  Bit Score: 153.63  E-value: 9.80e-44
                        10        20        30        40        50        60        70        80
                ....*....|....*....|....*....|....*....|....*....|....*....|....*....|....*....|
gi 52783098  70 ELKIRVKACGLNFIDLMVRQGNIDNPPKTPLVPGFECSGIVEALGDSVKGYEIGDRVMAFVNYN---------------- 133
Cdd:cd05188   1 EVLVRVEAAGLCGTDLHIRRGGYPPPPKLPLILGHEGAGVVVEVGPGVTGVKVGDRVVVLPNLGcgtcelcrelcpgggi 80
                        90       100       110       120       130       140       150       160
                ....*....|....*....|....*....|....*....|....*....|....*....|....*....|....*....|
gi 52783098 134 -------AWAEVVCTPVEFVYKIPDDMSFSEAAAFPMNFVTAYVMLFEVANLREGMSVLVHsAGGGVGQAVAQLCSTVpN 206
Cdd:cd05188  81 lgegldgGFAEYVVVPADNLVPLPDGLSLEEAALLPEPLATAYHALRRAGVLKPGDTVLVL-GAGGVGLLAAQLAKAA-G 158
                       170       180       190       200       210       220       230
                ....*....|....*....|....*....|....*....|....*....|....*....|....*....|....
gi 52783098 207 VTVFGTAST-FKHE-AIKDSVTHLFD-RNADYVQEVKRISAEGVDIVLDCLCGDNT-GKGLSLLKPLGTYILYG 276
Cdd:cd05188 159 ARVIVTDRSdEKLElAKELGADHVIDyKEEDLEEELRLTGGGGADVVIDAVGGPETlAQALRLLRPGGRIVVVG 232
RTN4I1 cd08248
Human Reticulon 4 Interacting Protein 1; Human Reticulon 4 Interacting Protein 1 is a member ...
42-379 4.18e-43

Human Reticulon 4 Interacting Protein 1; Human Reticulon 4 Interacting Protein 1 is a member of the medium chain dehydrogenase/ reductase (MDR) family. Riticulons are endoplasmic reticulum associated proteins involved in membrane trafficking and neuroendocrine secretion. The MDR/zinc-dependent alcohol dehydrogenase-like family, which contains the zinc-dependent alcohol dehydrogenase (ADH-Zn) and related proteins, is a diverse group of proteins related to the first identified member, class I mammalian ADH. MDRs display a broad range of activities and are distinguished from the smaller short chain dehydrogenases (~ 250 amino acids vs. the ~ 350 amino acids of the MDR). The MDR proteins have 2 domains: a C-terminal NAD(P) binding-Rossmann fold domain of a beta-alpha form and an N-terminal catalytic domain with distant homology to GroES.


Pssm-ID: 176210 [Multi-domain]  Cd Length: 350  Bit Score: 154.30  E-value: 4.18e-43
                        10        20        30        40        50        60        70        80
                ....*....|....*....|....*....|....*....|....*....|....*....|....*....|....*....|
gi 52783098  42 MRAVVLAGFGGLNKLRLFRKA-MPEPQ-DGELKIRVKACGLNFIDLMVRQG-----------NIDNPPKT---PLVPGFE 105
Cdd:cd08248   1 MKAWQIHSYGGIDSLLLLENArIPVIRkPNQVLIKVHAASVNPIDVLMRSGygrtllnkkrkPQSCKYSGiefPLTLGRD 80
                        90       100       110       120       130       140       150       160
                ....*....|....*....|....*....|....*....|....*....|....*....|....*....|....*....|
gi 52783098 106 CSGIVEALGDSVKGYEIGDRVMAFVnyNAW-----AEVVCTPVEFVYKIPDDMSFSEAAAFPMNFVTAYVMLFEVANLRE 180
Cdd:cd08248  81 CSGVVVDIGSGVKSFEIGDEVWGAV--PPWsqgthAEYVVVPENEVSKKPKNLSHEEAASLPYAGLTAWSALVNVGGLNP 158
                       170       180       190       200       210       220       230       240
                ....*....|....*....|....*....|....*....|....*....|....*....|....*....|....*....|
gi 52783098 181 ----GMSVLVHSAGGGVGQAVAQLCSTVpNVTVFGTASTfkhEAIkDSVTHLfdrNADYV-------QEVKRISAEGVDI 249
Cdd:cd08248 159 knaaGKRVLILGGSGGVGTFAIQLLKAW-GAHVTTTCST---DAI-PLVKSL---GADDVidynnedFEEELTERGKFDV 230
                       250       260       270       280       290       300       310       320
                ....*....|....*....|....*....|....*....|....*....|....*....|....*....|....*....|
gi 52783098 250 VLDCLCGDNTGKGLSLLKPLGTYIlygssNMVTGETKSF------FSFAKSWWQVEKVNPIKLYEENKVIAGFSLLNllf 323
Cdd:cd08248 231 ILDTVGGDTEKWALKLLKKGGTYV-----TLVSPLLKNTdklglvGGMLKSAVDLLKKNVKSLLKGSHYRWGFFSPS--- 302
                       330       340       350       360       370
                ....*....|....*....|....*....|....*....|....*....|....*.
gi 52783098 324 kqgragliRGVVEKLIGLYNQKKIKPVVDSLWALEEVKEAMQRIHDRGNIGKLILD 379
Cdd:cd08248 303 --------GSALDELAKLVEDGKIKPVIDKVFPFEEVPEAYEKVESGHARGKTVIK 350
MDR7 cd08276
Medium chain dehydrogenases/reductase (MDR)/zinc-dependent alcohol dehydrogenase-like family; ...
42-380 6.01e-41

Medium chain dehydrogenases/reductase (MDR)/zinc-dependent alcohol dehydrogenase-like family; This group is a member of the medium chain dehydrogenases/reductase (MDR)/zinc-dependent alcohol dehydrogenase-like family, but lacks the zinc-binding sites of the zinc-dependent alcohol dehydrogenases. The medium chain dehydrogenases/reductase (MDR)/zinc-dependent alcohol dehydrogenase-like family, which contains the zinc-dependent alcohol dehydrogenase (ADH-Zn) and related proteins, is a diverse group of proteins related to the first identified member, class I mammalian ADH. MDRs display a broad range of activities and are distinguished from the smaller short chain dehydrogenases (~ 250 amino acids vs. the ~ 350 amino acids of the MDR). The MDR proteins have 2 domains: a C-terminal NAD(P)-binding Rossmann fold domain of a beta-alpha form and an N-terminal catalytic domain with distant homology to GroES. The MDR group contains a host of activities, including the founding alcohol dehydrogenase (ADH), quinone reductase, sorbitol dehydrogenase, formaldehyde dehydrogenase, butanediol DH, ketose reductase, cinnamyl reductase, and numerous others. The zinc-dependent alcohol dehydrogenases (ADHs) catalyze the NAD(P)(H)-dependent interconversion of alcohols to aldehydes or ketones. Active site zinc has a catalytic role, while structural zinc aids in stability. ADH-like proteins typically form dimers (typically higher plants, mammals) or tetramers (yeast, bacteria), and generally have 2 tightly bound zinc atoms per subunit. The active site zinc is coordinated by a histidine, two cysteines, and a water molecule. The second zinc seems to play a structural role, affects subunit interactions, and is typically coordinated by 4 cysteines.


Pssm-ID: 176237 [Multi-domain]  Cd Length: 336  Bit Score: 148.07  E-value: 6.01e-41
                        10        20        30        40        50        60        70        80
                ....*....|....*....|....*....|....*....|....*....|....*....|....*....|....*....|
gi 52783098  42 MRAVVLAGFGGLNKLRLFRKAMPEPQDGELKIRVKACGLNFIDLMVRQGNIDNPPKTPLVPGFECSGIVEALGDSVKGYE 121
Cdd:cd08276   1 MKAWRLSGGGGLDNLKLVEEPVPEPGPGEVLVRVHAVSLNYRDLLILNGRYPPPVKDPLIPLSDGAGEVVAVGEGVTRFK 80
                        90       100       110       120       130       140       150       160
                ....*....|....*....|....*....|....*....|....*....|....*....|....*....|....*....|
gi 52783098 122 IGDRVMA--FVNYNAW-------------------AEVVCTPVEFVYKIPDDMSFSEAAAFPMNFVTAYVMLFEVANLRE 180
Cdd:cd08276  81 VGDRVVPtfFPNWLDGpptaedeasalggpidgvlAEYVVLPEEGLVRAPDHLSFEEAATLPCAGLTAWNALFGLGPLKP 160
                       170       180       190       200       210       220       230       240
                ....*....|....*....|....*....|....*....|....*....|....*....|....*....|....*....|
gi 52783098 181 GMSVLVHSAgGGVGQAVAQLCsTVPNVTVFGTASTF-KHEAIKD-SVTHLFDR--NADYVQEVKRISA-EGVDIVLDCLC 255
Cdd:cd08276 161 GDTVLVQGT-GGVSLFALQFA-KAAGARVIATSSSDeKLERAKAlGADHVINYrtTPDWGEEVLKLTGgRGVDHVVEVGG 238
                       250       260       270       280       290       300       310       320
                ....*....|....*....|....*....|....*....|....*....|....*....|....*....|....*....|
gi 52783098 256 GDNTGKGLSLLKPLGTYILYGssnmvtgetksFFSFAKswwqvekvnpiklyeenkviAGFSLLNLLFKQGRaglIRGVV 335
Cdd:cd08276 239 PGTLAQSIKAVAPGGVISLIG-----------FLSGFE--------------------APVLLLPLLTKGAT---LRGIA 284
                       330       340       350       360       370
                ....*....|....*....|....*....|....*....|....*....|..
gi 52783098 336 -------EKLIGLYNQKKIKPVVDSLWALEEVKEAMQRIHDRGNIGKLILDV 380
Cdd:cd08276 285 vgsraqfEAMNRAIEAHRIRPVIDRVFPFEEAKEAYRYLESGSHFGKVVIRV 336
MDR5 cd08271
Medium chain dehydrogenases/reductase (MDR)/zinc-dependent alcohol dehydrogenase-like family; ...
42-380 6.89e-41

Medium chain dehydrogenases/reductase (MDR)/zinc-dependent alcohol dehydrogenase-like family; This group is a member of the medium chain dehydrogenases/reductase (MDR)/zinc-dependent alcohol dehydrogenase-like family, but lacks the zinc-binding sites of the zinc-dependent alcohol dehydrogenases. The medium chain dehydrogenases/reductase (MDR)/zinc-dependent alcohol dehydrogenase-like family, which contains the zinc-dependent alcohol dehydrogenase (ADH-Zn) and related proteins, is a diverse group of proteins related to the first identified member, class I mammalian ADH. MDRs display a broad range of activities and are distinguished from the smaller short chain dehydrogenases (~ 250 amino acids vs. the ~ 350 amino acids of the MDR). The MDR proteins have 2 domains: a C-terminal NAD(P)-binding Rossmann fold domain of a beta-alpha form and an N-terminal catalytic domain with distant homology to GroES. The MDR group contains a host of activities, including the founding alcohol dehydrogenase (ADH), quinone reductase, sorbitol dehydrogenase, formaldehyde dehydrogenase, butanediol DH, ketose reductase, cinnamyl reductase, and numerous others. The zinc-dependent alcohol dehydrogenases (ADHs) catalyze the NAD(P)(H)-dependent interconversion of alcohols to aldehydes or ketones. Active site zinc has a catalytic role, while structural zinc aids in stability. ADH-like proteins typically form dimers (typically higher plants, mammals) or tetramers (yeast, bacteria), and generally have 2 tightly bound zinc atoms per subunit. The active site zinc is coordinated by a histidine, two cysteines, and a water molecule. The second zinc seems to play a structural role, affects subunit interactions, and is typically coordinated by 4 cysteines.


Pssm-ID: 176232 [Multi-domain]  Cd Length: 325  Bit Score: 147.81  E-value: 6.89e-41
                        10        20        30        40        50        60        70        80
                ....*....|....*....|....*....|....*....|....*....|....*....|....*....|....*....|
gi 52783098  42 MRAVVLAGFGGLNKLRLFRKAMPEPQDGELKIRVKACGLNFIDLMVRQGNiDNPPKTPLVPGFECSGIVEALGDSVKGYE 121
Cdd:cd08271   1 MKAWVLPKPGAALQLTLEEIEIPGPGAGEVLVKVHAAGLNPVDWKVIAWG-PPAWSYPHVPGVDGAGVVVAVGAKVTGWK 79
                        90       100       110       120       130       140       150       160
                ....*....|....*....|....*....|....*....|....*....|....*....|....*....|....*....|
gi 52783098 122 IGDRVM---AFVNYNAWAEVVCTPVEFVYKIPDDMSFSEAAAFPMNFVTAYVMLFEVANLREGMSVLVHSAGGGVGQAVA 198
Cdd:cd08271  80 VGDRVAyhaSLARGGSFAEYTVVDARAVLPLPDSLSFEEAAALPCAGLTAYQALFKKLRIEAGRTILITGGAGGVGSFAV 159
                       170       180       190       200       210       220       230       240
                ....*....|....*....|....*....|....*....|....*....|....*....|....*....|....*....|
gi 52783098 199 QLCSTVpNVTVFGTASTFKHEAIKD-SVTHLFD-RNADYVQEVKRI-SAEGVDIVLDCLCGDNTGKGLSLLKPLGTYI-L 274
Cdd:cd08271 160 QLAKRA-GLRVITTCSKRNFEYVKSlGADHVIDyNDEDVCERIKEItGGRGVDAVLDTVGGETAAALAPTLAFNGHLVcI 238
                       250       260       270       280       290       300       310       320
                ....*....|....*....|....*....|....*....|....*....|....*....|....*....|....*....|
gi 52783098 275 YGSSNMvtgETKSFFSFAKSWWQVEkVNPIKLYEENKVIAgfsllnllfkqgragLIRGVVEKLIGLYNQKKIKPVVDSL 354
Cdd:cd08271 239 QGRPDA---SPDPPFTRALSVHEVA-LGAAHDHGDPAAWQ---------------DLRYAGEELLELLAAGKLEPLVIEV 299
                       330       340
                ....*....|....*....|....*.
gi 52783098 355 WALEEVKEAMQRIHDRGNIGKLILDV 380
Cdd:cd08271 300 LPFEQLPEALRALKDRHTRGKIVVTI 325
AdhP COG1064
D-arabinose 1-dehydrogenase, Zn-dependent alcohol dehydrogenase family [Carbohydrate transport ...
42-379 8.50e-39

D-arabinose 1-dehydrogenase, Zn-dependent alcohol dehydrogenase family [Carbohydrate transport and metabolism];


Pssm-ID: 440684 [Multi-domain]  Cd Length: 332  Bit Score: 142.17  E-value: 8.50e-39
                        10        20        30        40        50        60        70        80
                ....*....|....*....|....*....|....*....|....*....|....*....|....*....|....*....|
gi 52783098  42 MRAVVLAGFGGlnKLRLFRKAMPEPQDGELKIRVKACGLNFIDLMVRQGNIDnPPKTPLVPGFECSGIVEALGDSVKGYE 121
Cdd:COG1064   1 MKAAVLTEPGG--PLELEEVPRPEPGPGEVLVKVEACGVCHSDLHVAEGEWP-VPKLPLVPGHEIVGRVVAVGPGVTGFK 77
                        90       100       110       120       130       140       150       160
                ....*....|....*....|....*....|....*....|....*....|....*....|....*....|....*....|
gi 52783098 122 IGDRVM------------------------AFVNYNAW---AEVVCTPVEFVYKIPDDMSFSEAAAFPMNFVTAYVMLfE 174
Cdd:COG1064  78 VGDRVGvgwvdscgtceycrsgrenlcengRFTGYTTDggyAEYVVVPARFLVKLPDGLDPAEAAPLLCAGITAYRAL-R 156
                       170       180       190       200       210       220       230       240
                ....*....|....*....|....*....|....*....|....*....|....*....|....*....|....*....|
gi 52783098 175 VANLREGMSVLVHSAgGGVGQAVAQLCSTVP-NVTVFGTASTfKHEAIKDS-VTHLFD-RNADYVQEVKRIsaEGVDIVL 251
Cdd:COG1064 157 RAGVGPGDRVAVIGA-GGLGHLAVQIAKALGaEVIAVDRSPE-KLELARELgADHVVNsSDEDPVEAVREL--TGADVVI 232
                       250       260       270       280       290       300       310       320
                ....*....|....*....|....*....|....*....|....*....|....*....|....*....|....*....|
gi 52783098 252 DCLC-GDNTGKGLSLLKPLGTYILYGssnmVTGETKSFFSFAKSWWQVEkvnpiklyeenkvIAGfSLLNllfkqGRAGL 330
Cdd:COG1064 233 DTVGaPATVNAALALLRRGGRLVLVG----LPGGPIPLPPFDLILKERS-------------IRG-SLIG-----TRADL 289
                       330       340       350       360
                ....*....|....*....|....*....|....*....|....*....
gi 52783098 331 irgvvEKLIGLYNQKKIKPVVDsLWALEEVKEAMQRIHDRGNIGKLILD 379
Cdd:COG1064 290 -----QEMLDLAAEGKIKPEVE-TIPLEEANEALERLRAGKVRGRAVLD 332
enoyl_reductase_like cd08249
enoyl_reductase_like; Member identified as possible enoyl reductase of the MDR family. 2-enoyl ...
42-253 6.83e-38

enoyl_reductase_like; Member identified as possible enoyl reductase of the MDR family. 2-enoyl thioester reductase (ETR) catalyzes the NADPH-dependent dependent conversion of trans-2-enoyl acyl carrier protein/coenzyme A (ACP/CoA) to acyl-(ACP/CoA) in fatty acid synthesis. 2-enoyl thioester reductase activity has been linked in Candida tropicalis as essential in maintaining mitiochondrial respiratory function. This ETR family is a part of the medium chain dehydrogenase/reductase family, but lack the zinc coordination sites characteristic of the alcohol dehydrogenases in this family. NAD(P)(H)-dependent oxidoreductases are the major enzymes in the interconversion of alcohols and aldehydes, or ketones. Alcohol dehydrogenase in the liver converts ethanol and NAD+ to acetaldehyde and NADH, while in yeast and some other microorganisms ADH catalyzes the conversion acetaldehyde to ethanol in alcoholic fermentation. ADH is a member of the medium chain alcohol dehydrogenase family (MDR), which has a NAD(P)(H)-binding domain in a Rossmann fold of a beta-alpha form. The NAD(H)-binding region is comprised of 2 structurally similar halves, each of which contacts a mononucleotide. The N-terminal catalytic domain has a distant homology to GroES. These proteins typically form dimers (typically higher plants, mammals) or tetramers (yeast, bacteria), and have 2 tightly bound zinc atoms per subunit, a catalytic zinc at the active site, and a structural zinc in a lobe of the catalytic domain. NAD(H)-binding occurs in the cleft between the catalytic and coenzyme-binding domains at the active site, and coenzyme binding induces a conformational closing of this cleft. Coenzyme binding typically precedes and contributes to substrate binding. Candida tropicalis enoyl thioester reductase (Etr1p) catalyzes the NADPH-dependent reduction of trans-2-enoyl thioesters in mitochondrial fatty acid synthesis. Etr1p forms homodimers with each subunit containing a nucleotide-binding Rossmann fold domain and a catalytic domain.


Pssm-ID: 176211 [Multi-domain]  Cd Length: 339  Bit Score: 140.03  E-value: 6.83e-38
                        10        20        30        40        50        60        70        80
                ....*....|....*....|....*....|....*....|....*....|....*....|....*....|....*....|
gi 52783098  42 MRAVVLAGFGGlNKLRLFRKAMPEPQDGELKIRVKACGLNFIDLMVRQGNIdnPPKTPLVPGFECSGIVEALGDSVKGYE 121
Cdd:cd08249   1 QKAAVLTGPGG-GLLVVVDVPVPKPGPDEVLVKVKAVALNPVDWKHQDYGF--IPSYPAILGCDFAGTVVEVGSGVTRFK 77
                        90       100       110       120       130       140       150       160
                ....*....|....*....|....*....|....*....|....*....|....*....|....*....|....*....|
gi 52783098 122 IGDRVMAFVN--------YNAWAEVVCTPVEFVYKIPDDMSFSEAAAFPMNFVTAYVMLFEVANLR----------EGMS 183
Cdd:cd08249  78 VGDRVAGFVHggnpndprNGAFQEYVVADADLTAKIPDNISFEEAATLPVGLVTAALALFQKLGLPlpppkpspasKGKP 157
                       170       180       190       200       210       220       230
                ....*....|....*....|....*....|....*....|....*....|....*....|....*....|..
gi 52783098 184 VLVHSAGGGVGQAVAQLCSTVpNVTVFGTASTFKHEAIKDS-VTHLFDRN-ADYVQEVKRISAEGVDIVLDC 253
Cdd:cd08249 158 VLIWGGSSSVGTLAIQLAKLA-GYKVITTASPKNFDLVKSLgADAVFDYHdPDVVEDIRAATGGKLRYALDC 228
MDR_enoyl_red cd08244
Possible enoyl reductase; Member identified as possible enoyl reductase of the MDR family. ...
42-378 5.45e-35

Possible enoyl reductase; Member identified as possible enoyl reductase of the MDR family. 2-enoyl thioester reductase (ETR) catalyzes the NADPH-dependent dependent conversion of trans-2-enoyl acyl carrier protein/coenzyme A (ACP/CoA) to acyl-(ACP/CoA) in fatty acid synthesis. 2-enoyl thioester reductase activity has been linked in Candida tropicalis as essential in maintaining mitiochondrial respiratory function. This ETR family is a part of the medium chain dehydrogenase/reductase family, but lack the zinc coordination sites characteristic of the alcohol dehydrogenases in this family. NAD(P)(H)-dependent oxidoreductases are the major enzymes in the interconversion of alcohols and aldehydes, or ketones. Alcohol dehydrogenase in the liver converts ethanol and NAD+ to acetaldehyde and NADH, while in yeast and some other microorganisms ADH catalyzes the conversion acetaldehyde to ethanol in alcoholic fermentation. ADH is a member of the medium chain alcohol dehydrogenase family (MDR), which has a NAD(P)(H)-binding domain in a Rossmann fold of a beta-alpha form. The NAD(H)-binding region is comprised of 2 structurally similar halves, each of which contacts a mononucleotide. The N-terminal catalytic domain has a distant homology to GroES. These proteins typically form dimers (typically higher plants, mammals) or tetramers (yeast, bacteria), and have 2 tightly bound zinc atoms per subunit, a catalytic zinc at the active site, and a structural zinc in a lobe of the catalytic domain. NAD(H) binding occurs in the cleft between the catalytic and coenzyme-binding domains at the active site, and coenzyme binding induces a conformational closing of this cleft. Coenzyme binding typically precedes and contributes to substrate binding. Candida tropicalis enoyl thioester reductase (Etr1p) catalyzes the NADPH-dependent reduction of trans-2-enoyl thioesters in mitochondrial fatty acid synthesis. Etr1p forms homodimers, with each subunit containing a nucleotide-binding Rossmann fold domain and a catalytic domain.


Pssm-ID: 176206 [Multi-domain]  Cd Length: 324  Bit Score: 131.72  E-value: 5.45e-35
                        10        20        30        40        50        60        70        80
                ....*....|....*....|....*....|....*....|....*....|....*....|....*....|....*....|
gi 52783098  42 MRAVVLAGFGGLNKLRLFRKAMPEPQDGELKIRVKACGLNFIDLMVRQGNIDNP--PKTPLVPGFECSGIVEALGDSVKG 119
Cdd:cd08244   1 MRAIRLHEFGPPEVLVPEDVPDPVPGPGQVRIAVAAAGVHFVDTQLRSGWGPGPfpPELPYVPGGEVAGVVDAVGPGVDP 80
                        90       100       110       120       130       140       150       160
                ....*....|....*....|....*....|....*....|....*....|....*....|....*....|....*....|
gi 52783098 120 YEIGDRVMAFVNYN--AWAEVVCTPVEFVYKIPDDMSFSEAAAFPMNFVTAyVMLFEVANLREGMSVLVHSAGGGVGQAV 197
Cdd:cd08244  81 AWLGRRVVAHTGRAggGYAELAVADVDSLHPVPDGLDLEAAVAVVHDGRTA-LGLLDLATLTPGDVVLVTAAAGGLGSLL 159
                       170       180       190       200       210       220       230       240
                ....*....|....*....|....*....|....*....|....*....|....*....|....*....|....*....|
gi 52783098 198 AQLCSTVpNVTVFGTASTfkhEAIKDSVTHL-----FD-RNADYVQEVKR-ISAEGVDIVLDCLCGDNTGKGLSLLKPLG 270
Cdd:cd08244 160 VQLAKAA-GATVVGAAGG---PAKTALVRALgadvaVDyTRPDWPDQVREaLGGGGVTVVLDGVGGAIGRAALALLAPGG 235
                       250       260       270       280       290       300       310       320
                ....*....|....*....|....*....|....*....|....*....|....*....|....*....|....*....|
gi 52783098 271 TYILYGSSnmvTGEtksffsfakswwqvekvnPIKLYEENKVIAGFSLLNLLFKQGRAGLIRGVVEKLIGLYNQKKIKPV 350
Cdd:cd08244 236 RFLTYGWA---SGE------------------WTALDEDDARRRGVTVVGLLGVQAERGGLRALEARALAEAAAGRLVPV 294
                       330       340
                ....*....|....*....|....*...
gi 52783098 351 VDSLWALEEVKEAMQRIHDRGNIGKLIL 378
Cdd:cd08244 295 VGQTFPLERAAEAHAALEARSTVGKVLL 322
quinone_oxidoreductase_like_1 cd08243
Quinone oxidoreductase (QOR); NAD(P)(H)-dependent oxidoreductases are the major enzymes in the ...
42-377 3.99e-34

Quinone oxidoreductase (QOR); NAD(P)(H)-dependent oxidoreductases are the major enzymes in the interconversion of alcohols and aldehydes, or ketones. The medium chain alcohol dehydrogenase family (MDR) have a NAD(P)(H)-binding domain in a Rossmann fold of a beta-alpha form. The N-terminal region typically has an all-beta catalytic domain. These proteins typically form dimers (typically higher plants, mammals) or tetramers (yeast, bacteria), and have 2 tightly bound zinc atoms per subunit.


Pssm-ID: 176205 [Multi-domain]  Cd Length: 320  Bit Score: 129.27  E-value: 3.99e-34
                        10        20        30        40        50        60        70        80
                ....*....|....*....|....*....|....*....|....*....|....*....|....*....|....*....|
gi 52783098  42 MRAVVLAGFGGLNKLRLFRKAMPEPQDGELKIRVKACGLNFIDLMVRQGNIdNPPKTPLVPGFECSGIVEAlgDSVKGYE 121
Cdd:cd08243   1 MKAIVIEQPGGPEVLKLREIPIPEPKPGWVLIRVKAFGLNRSEIFTRQGHS-PSVKFPRVLGIEAVGEVEE--APGGTFT 77
                        90       100       110       120       130       140       150       160
                ....*....|....*....|....*....|....*....|....*....|....*....|....*....|....*....|
gi 52783098 122 IGDRVMAFVN-----YN-AWAEVVCTPVEFVYKIPDDMSFSEAAAFPMNFVTAYVMLFEVANLREGMSVLVHSAGGGVGQ 195
Cdd:cd08243  78 PGQRVATAMGgmgrtFDgSYAEYTLVPNEQVYAIDSDLSWAELAALPETYYTAWGSLFRSLGLQPGDTLLIRGGTSSVGL 157
                       170       180       190       200       210       220       230       240
                ....*....|....*....|....*....|....*....|....*....|....*....|....*....|....*....|
gi 52783098 196 AVAQL----CSTVpnvtvfgTASTFKheaiKDSVTHLFDRNADYV--------QEVKRISaEGVDIVLDcLCGDNTGK-G 262
Cdd:cd08243 158 AALKLakalGATV-------TATTRS----PERAALLKELGADEVviddgaiaEQLRAAP-GGFDKVLE-LVGTATLKdS 224
                       250       260       270       280       290       300       310       320
                ....*....|....*....|....*....|....*....|....*....|....*....|....*....|....*....|
gi 52783098 263 LSLLKPLGTYILYGssnMVTGetksffsfaksWWQVEKVNPI-------KLYeenkvIAGFSLLNLlfkqgRAGLIRGVV 335
Cdd:cd08243 225 LRHLRPGGIVCMTG---LLGG-----------QWTLEDFNPMddipsgvNLT-----LTGSSSGDV-----PQTPLQELF 280
                       330       340       350       360
                ....*....|....*....|....*....|....*....|..
gi 52783098 336 EKLiglyNQKKIKPVVDSLWALEEVKEAMQRIHDRGNIGKLI 377
Cdd:cd08243 281 DFV----AAGHLDIPPSKVFTFDEIVEAHAYMESNRAFGKVV 318
Zn_ADH5 cd08259
Alcohol dehydrogenases of the MDR family; NAD(P)(H)-dependent oxidoreductases are the major ...
42-379 6.87e-32

Alcohol dehydrogenases of the MDR family; NAD(P)(H)-dependent oxidoreductases are the major enzymes in the interconversion of alcohols and aldehydes, or ketones. This group contains proteins that share the characteristic catalytic and structural zinc-binding sites of the zinc-dependent alcohol dehydrogenase family. Alcohol dehydrogenase in the liver converts ethanol and NAD+ to acetaldehyde and NADH, while in yeast and some other microorganisms ADH catalyzes the conversion acetaldehyde to ethanol in alcoholic fermentation. ADH is a member of the medium chain alcohol dehydrogenase family (MDR), which have a NAD(P)(H)-binding domain in a Rossmann fold of a beta-alpha form. The NAD(H)-binding region is comprised of 2 structurally similar halves, each of which contacts a mononucleotide. A GxGxxG motif after the first mononucleotide contact half allows the close contact of the coenzyme with the ADH backbone. The N-terminal catalytic domain has a distant homology to GroES. These proteins typically form dimers (typically higher plants, mammals) or tetramers (yeast, bacteria), and have 2 tightly bound zinc atoms per subunit, a catalytic zinc at the active site and a structural zinc in a lobe of the catalytic domain. NAD(H)-binding occurs in the cleft between the catalytic and coenzyme-binding domains at the active site, and coenzyme binding induces a conformational closing of this cleft. Coenzyme binding typically precedes and contributes to substrate binding. In human ADH catalysis, the zinc ion helps coordinate the alcohol, followed by deprotonation of a histidine (His-51), the ribose of NAD, a serine (Ser-48), then the alcohol, which allows the transfer of a hydride to NAD+, creating NADH and a zinc-bound aldehyde or ketone. In yeast and some bacteria, the active site zinc binds an aldehyde, polarizing it, and leading to the reverse reaction.


Pssm-ID: 176220 [Multi-domain]  Cd Length: 332  Bit Score: 123.58  E-value: 6.87e-32
                        10        20        30        40        50        60        70        80
                ....*....|....*....|....*....|....*....|....*....|....*....|....*....|....*....|
gi 52783098  42 MRAVVLAGFGGlnKLRLFRKAMPEPQDGELKIRVKACGLNFIDLMVRQGNIDNPpKTPLVPGFECSGIVEALGDSVKGYE 121
Cdd:cd08259   1 MKAAILHKPNK--PLQIEEVPDPEPGPGEVLIKVKAAGVCYRDLLFWKGFFPRG-KYPLILGHEIVGTVEEVGEGVERFK 77
                        90       100       110       120       130       140       150       160
                ....*....|....*....|....*....|....*....|....*....|....*....|....*....|....*....|
gi 52783098 122 IGDRVM---------------------------AFVNYNAWAEVVCTPVEFVYKIPDDMSFSEAAAFPMNFVTAYVMLFe 174
Cdd:cd08259  78 PGDRVIlyyyipcgkceyclsgeenlcrnraeyGEEVDGGFAEYVKVPERSLVKLPDNVSDESAALAACVVGTAVHALK- 156
                       170       180       190       200       210       220       230       240
                ....*....|....*....|....*....|....*....|....*....|....*....|....*....|....*....|
gi 52783098 175 VANLREGMSVLVHSAGGGVGQAVAQLCSTVPNVTVFGTASTFKHEAIKDsvthlfdRNADYVQEVKRISAE-----GVDI 249
Cdd:cd08259 157 RAGVKKGDTVLVTGAGGGVGIHAIQLAKALGARVIAVTRSPEKLKILKE-------LGADYVIDGSKFSEDvkklgGADV 229
                       250       260       270       280       290       300       310       320
                ....*....|....*....|....*....|....*....|....*....|....*....|....*....|....*....|
gi 52783098 250 VLDCLCGDNTGKGLSLLKPLGTYILYGSsnmVTGEtksffsfakswwqVEKVNPIKL-YEENKVIagfsllnllfkqGRA 328
Cdd:cd08259 230 VIELVGSPTIEESLRSLNKGGRLVLIGN---VTPD-------------PAPLRPGLLiLKEIRII------------GSI 281
                       330       340       350       360       370
                ....*....|....*....|....*....|....*....|....*....|.
gi 52783098 329 GLIRGVVEKLIGLYNQKKIKPVVDSLWALEEVKEAMQRIHDRGNIGKLILD 379
Cdd:cd08259 282 SATKADVEEALKLVKEGKIKPVIDRVVSLEDINEALEDLKSGKVVGRIVLK 332
ETR cd08290
2-enoyl thioester reductase (ETR); 2-enoyl thioester reductase (ETR) catalyzes the ...
42-380 2.90e-30

2-enoyl thioester reductase (ETR); 2-enoyl thioester reductase (ETR) catalyzes the NADPH-dependent conversion of trans-2-enoyl acyl carrier protein/coenzyme A (ACP/CoA) to acyl-(ACP/CoA) in fatty acid synthesis. 2-enoyl thioester reductase activity has been linked in Candida tropicalis as essential in maintaining mitiochondrial respiratory function. This ETR family is a part of the medium chain dehydrogenase/reductase family, but lack the zinc coordination sites characteristic of the alcohol dehydrogenases in this family. NAD(P)(H)-dependent oxidoreductases are the major enzymes in the interconversion of alcohols and aldehydes, or ketones. Alcohol dehydrogenase in the liver converts ethanol and NAD+ to acetaldehyde and NADH, while in yeast and some other microorganisms ADH catalyzes the conversion acetaldehyde to ethanol in alcoholic fermentation. ADH is a member of the medium chain alcohol dehydrogenase family (MDR), which has a NAD(P)(H)-binding domain in a Rossmann fold of a beta-alpha form. The NAD(H)-binding region is comprised of 2 structurally similar halves, each of which contacts a mononucleotide. The N-terminal catalytic domain has a distant homology to GroES. These proteins typically form dimers (typically higher plants, mammals) or tetramers (yeast, bacteria), and have 2 tightly bound zinc atoms per subunit, a catalytic zinc at the active site, and a structural zinc in a lobe of the catalytic domain. NAD(H) binding occurs in the cleft between the catalytic and coenzyme-binding domains, at the active site, and coenzyme binding induces a conformational closing of this cleft. Coenzyme binding typically precedes and contributes to substrate binding. Candida tropicalis enoyl thioester reductase (Etr1p) catalyzes the NADPH-dependent reduction of trans-2-enoyl thioesters in mitochondrial fatty acid synthesis. Etr1p forms homodimers, with each subunit containing a nucleotide-binding Rossmann fold domain and a catalytic domain.


Pssm-ID: 176250 [Multi-domain]  Cd Length: 341  Bit Score: 119.25  E-value: 2.90e-30
                        10        20        30        40        50        60        70        80
                ....*....|....*....|....*....|....*....|....*....|....*....|....*....|....*....|
gi 52783098  42 MRAVVLAGFGG-LNKLRLFRKAMPEPQD-GELKIRVKACGLNFIDLMVRQGNIDNPPKT----PLVPGFECSGIVEALGD 115
Cdd:cd08290   1 AKALVYTEHGEpKEVLQLESYEIPPPGPpNEVLVKMLAAPINPADINQIQGVYPIKPPTtpepPAVGGNEGVGEVVKVGS 80
                        90       100       110       120       130       140       150       160
                ....*....|....*....|....*....|....*....|....*....|....*....|....*....|....*....|
gi 52783098 116 SVKGYEIGDRV-MAFVNYNAWAEVVCTPVEFVYKIPDDMSFSEAAAFPMNFVTAYVMLFEVANLREGMSVLVHSAGGGVG 194
Cdd:cd08290  81 GVKSLKPGDWViPLRPGLGTWRTHAVVPADDLIKVPNDVDPEQAATLSVNPCTAYRLLEDFVKLQPGDWVIQNGANSAVG 160
                       170       180       190       200       210       220       230       240
                ....*....|....*....|....*....|....*....|....*....|....*....|....*....|....*....|
gi 52783098 195 QAVAQLC-----STVPNVTvfgtastfKHEAIKDSVTHLFDRNADYV------------QEVKRISAEGVDIVLDCLCGD 257
Cdd:cd08290 161 QAVIQLAkllgiKTINVVR--------DRPDLEELKERLKALGADHVlteeelrsllatELLKSAPGGRPKLALNCVGGK 232
                       250       260       270       280       290       300       310       320
                ....*....|....*....|....*....|....*....|....*....|....*....|....*....|....*....|
gi 52783098 258 NTGKGLSLLKPLGTYILYG--SSNMVTGETKSFFsfakswwqvekVNPIKLyeenkviAGFSLLNLLfKQGRAGLIRGVV 335
Cdd:cd08290 233 SATELARLLSPGGTMVTYGgmSGQPVTVPTSLLI-----------FKDITL-------RGFWLTRWL-KRANPEEKEDML 293
                       330       340       350       360
                ....*....|....*....|....*....|....*....|....*...
gi 52783098 336 EKLIGLYNQKKIKPV---VDSLWALEEVKEAMQRIHDRGNIGKLILDV 380
Cdd:cd08290 294 EELAELIREGKLKAPpveKVTDDPLEEFKDALANALKGGGGGKQVLVM 341
Tdh COG1063
Threonine dehydrogenase or related Zn-dependent dehydrogenase [Amino acid transport and ...
42-381 1.24e-29

Threonine dehydrogenase or related Zn-dependent dehydrogenase [Amino acid transport and metabolism, General function prediction only]; Threonine dehydrogenase or related Zn-dependent dehydrogenase is part of the Pathway/BioSystem: Non-phosphorylated Entner-Doudoroff pathway


Pssm-ID: 440683 [Multi-domain]  Cd Length: 341  Bit Score: 117.55  E-value: 1.24e-29
                        10        20        30        40        50        60        70        80
                ....*....|....*....|....*....|....*....|....*....|....*....|....*....|....*....|
gi 52783098  42 MRAVVLAGFGglnKLRLFRKAMPEPQDGELKIRVKACGlnfI---DLMVRQGNIDNPPKtPLVPGFECSGIVEALGDSVK 118
Cdd:COG1063   1 MKALVLHGPG---DLRLEEVPDPEPGPGEVLVRVTAVG---IcgsDLHIYRGGYPFVRP-PLVLGHEFVGEVVEVGEGVT 73
                        90       100       110       120       130       140       150       160
                ....*....|....*....|....*....|....*....|....*....|....*....|....*....|....*....|
gi 52783098 119 GYEIGDRVMAFVN-------------YN---------------AWAEVVCTPVEFVYKIPDDMSFsEAAAFPMNFVTAYv 170
Cdd:COG1063  74 GLKVGDRVVVEPNipcgecrycrrgrYNlcenlqflgiagrdgGFAEYVRVPAANLVKVPDGLSD-EAAALVEPLAVAL- 151
                       170       180       190       200       210       220       230       240
                ....*....|....*....|....*....|....*....|....*....|....*....|....*....|....*....|
gi 52783098 171 MLFEVANLREGMSVLVhsAGGG-VGQAVAQLCST--VPNVTVFGTaSTFKHEAIKDS-VTHLFD-RNADYVQEVKRISA- 244
Cdd:COG1063 152 HAVERAGVKPGDTVLV--IGAGpIGLLAALAARLagAARVIVVDR-NPERLELARELgADAVVNpREEDLVEAVRELTGg 228
                       250       260       270       280       290       300       310       320
                ....*....|....*....|....*....|....*....|....*....|....*....|....*....|....*....|
gi 52783098 245 EGVDIVLDClcgdnTG------KGLSLLKPLGTYILYGssnmVTGETKSFfsfakswwqvekvNPIKLYEENKVIAGfsl 318
Cdd:COG1063 229 RGADVVIEA-----VGapaaleQALDLVRPGGTVVLVG----VPGGPVPI-------------DLNALVRKELTLRG--- 283
                       330       340       350       360       370       380
                ....*....|....*....|....*....|....*....|....*....|....*....|....*.
gi 52783098 319 lnllfkqGRAGLIRgVVEKLIGLYNQKKI--KPVVDSLWALEEVKEAMQRIHDR-GNIGKLILDVE 381
Cdd:COG1063 284 -------SRNYTRE-DFPEALELLASGRIdlEPLITHRFPLDDAPEAFEAAADRaDGAIKVVLDPD 341
Mgc45594_like cd08250
Mgc45594 gene product and other MDR family members; Includes Human Mgc45594 gene product of ...
59-379 1.39e-29

Mgc45594 gene product and other MDR family members; Includes Human Mgc45594 gene product of undetermined function. The medium chain dehydrogenases/reductase (MDR)/zinc-dependent alcohol dehydrogenase-like family, which contains the zinc-dependent alcohol dehydrogenase (ADH-Zn) and related proteins, is a diverse group of proteins related to the first identified member, class I mammalian ADH. MDRs display a broad range of activities and are distinguished from the smaller short chain dehydrogenases (~ 250 amino acids vs. the ~ 350 amino acids of the MDR). The MDR proteins have 2 domains: a C-terminal NAD(P) binding-Rossmann fold domain of a beta-alpha form and an N-terminal catalytic domain with distant homology to GroES.


Pssm-ID: 176212 [Multi-domain]  Cd Length: 329  Bit Score: 117.36  E-value: 1.39e-29
                        10        20        30        40        50        60        70        80
                ....*....|....*....|....*....|....*....|....*....|....*....|....*....|....*....|
gi 52783098  59 FRKA-------MPEPQDGELKIRVKACGLNFIDLMVRQGNIDNPPKTPLVPGFECSGIVEALGDSVKGYEIGDRVmAFVN 131
Cdd:cd08250  14 FREAtsivdvpVPLPGPGEVLVKNRFVGINASDINFTAGRYDPGVKPPFDCGFEGVGEVVAVGEGVTDFKVGDAV-ATMS 92
                        90       100       110       120       130       140       150       160
                ....*....|....*....|....*....|....*....|....*....|....*....|....*....|....*....|
gi 52783098 132 YNAWAEVVCTPVEFVYKIPDdmSFSEAAAFPMNFVTAYVMLFEVANLREGMSVLVHSAGGGVGQAVAQLCSTVPNvTVFG 211
Cdd:cd08250  93 FGAFAEYQVVPARHAVPVPE--LKPEVLPLLVSGLTASIALEEVGEMKSGETVLVTAAAGGTGQFAVQLAKLAGC-HVIG 169
                       170       180       190       200       210       220       230       240
                ....*....|....*....|....*....|....*....|....*....|....*....|....*....|....*....|
gi 52783098 212 TASTFKHEAIKDSVThlFDRNADYVQE-----VKRISAEGVDIVLDCLCGDNTGKGLSLLKPLGTYILYGssnMVTGETK 286
Cdd:cd08250 170 TCSSDEKAEFLKSLG--CDRPINYKTEdlgevLKKEYPKGVDVVYESVGGEMFDTCVDNLALKGRLIVIG---FISGYQS 244
                       250       260       270       280       290       300       310       320
                ....*....|....*....|....*....|....*....|....*....|....*....|....*....|....*....|
gi 52783098 287 SffsfakSWWQVEKVNPI--KLYEENKVIAGFsllnLLFKQgrAGLIRGVVEKLIGLYNQKKIKPVVD--SLWALEEVKE 362
Cdd:cd08250 245 G------TGPSPVKGATLppKLLAKSASVRGF----FLPHY--AKLIPQHLDRLLQLYQRGKLVCEVDptRFRGLESVAD 312
                       330
                ....*....|....*..
gi 52783098 363 AMQRIHDRGNIGKLILD 379
Cdd:cd08250 313 AVDYLYSGKNIGKVVVE 329
threonine_DH_like cd08234
L-threonine dehydrogenase; L-threonine dehydrogenase (TDH) catalyzes the zinc-dependent ...
42-373 4.27e-28

L-threonine dehydrogenase; L-threonine dehydrogenase (TDH) catalyzes the zinc-dependent formation of 2-amino-3-ketobutyrate from L-threonine, via NAD(H)-dependent oxidation. THD is a member of the zinc-requiring, medium chain NAD(H)-dependent alcohol dehydrogenase family (MDR). MDRs have a NAD(P)(H)-binding domain in a Rossmann fold of a beta-alpha form. NAD(P)(H)-dependent oxidoreductases are the major enzymes in the interconversion of alcohols and aldehydes, or ketones. The N-terminal region typically has an all-beta catalytic domain. These proteins typically form dimers (typically higher plants, mammals) or tetramers (yeast, bacteria), and have 2 tightly bound zinc atoms per subunit. Sorbitol and aldose reductase are NAD(+) binding proteins of the polyol pathway, which interconverts glucose and fructose.


Pssm-ID: 176196 [Multi-domain]  Cd Length: 334  Bit Score: 113.01  E-value: 4.27e-28
                        10        20        30        40        50        60        70        80
                ....*....|....*....|....*....|....*....|....*....|....*....|....*....|....*....|
gi 52783098  42 MRAVVLAGFGglnKLRLFRKAMPEPQDGELKIRVKACGLNFIDLMVRQGniDNPPKTPLVPGFECSGIVEALGDSVKGYE 121
Cdd:cd08234   1 MKALVYEGPG---ELEVEEVPVPEPGPDEVLIKVAACGICGTDLHIYEG--EFGAAPPLVPGHEFAGVVVAVGSKVTGFK 75
                        90       100       110       120       130       140       150       160
                ....*....|....*....|....*....|....*....|....*....|....*....|....*....|....*....|
gi 52783098 122 IGDRVMAFVNY-------------------NAW--------AEVVCTPVEFVYKIPDDMSFSEAAafpmnfvtayvmLFE 174
Cdd:cd08234  76 VGDRVAVDPNIycgecfycrrgrpnlcenlTAVgvtrnggfAEYVVVPAKQVYKIPDNLSFEEAA------------LAE 143
                       170       180       190       200       210       220       230       240
                ....*....|....*....|....*....|....*....|....*....|....*....|....*....|....*....|
gi 52783098 175 ----------VANLREGMSVLVHsaGGGV-GQAVAQLC--STVPNVTVFGTaSTFKHEAIKD-SVTHLFDRNADYVQEVK 240
Cdd:cd08234 144 plscavhgldLLGIKPGDSVLVF--GAGPiGLLLAQLLklNGASRVTVAEP-NEEKLELAKKlGATETVDPSREDPEAQK 220
                       250       260       270       280       290       300       310       320
                ....*....|....*....|....*....|....*....|....*....|....*....|....*....|....*....|
gi 52783098 241 RISAEGVDIVLDClcgdnTGK------GLSLLKPLGTYILYGssnmVTGETKSFfsfakswwqveKVNPIKLYE-ENKVI 313
Cdd:cd08234 221 EDNPYGFDVVIEA-----TGVpktleqAIEYARRGGTVLVFG----VYAPDARV-----------SISPFEIFQkELTII 280
                       330       340       350       360       370       380
                ....*....|....*....|....*....|....*....|....*....|....*....|..
gi 52783098 314 AGFSllnLLFKQGRAglirgvveklIGLYNQKKI--KPVVDSLWALEEVKEAMQRIHDRGNI 373
Cdd:cd08234 281 GSFI---NPYTFPRA----------IALLESGKIdvKGLVSHRLPLEEVPEALEGMRSGGAL 329
ETR_like_1 cd08291
2-enoyl thioester reductase (ETR) like proteins, child 1; 2-enoyl thioester reductase (ETR) ...
42-332 2.45e-27

2-enoyl thioester reductase (ETR) like proteins, child 1; 2-enoyl thioester reductase (ETR) like proteins. ETR catalyzes the NADPH-dependent conversion of trans-2-enoyl acyl carrier protein/coenzyme A (ACP/CoA) to acyl-(ACP/CoA) in fatty acid synthesis. 2-enoyl thioester reductase activity has been linked in Candida tropicalis as essential in maintaining mitiochondrial respiratory function. This ETR family is a part of the medium chain dehydrogenase/reductase family, but lack the zinc coordination sites characteristic of the 2-enoyl thioester reductase (ETR) like proteins. ETR catalyzes the NADPH-dependent dependent conversion of trans-2-enoyl acyl carrier protein/coenzyme A (ACP/CoA) to acyl-(ACP/CoA) in fatty acid synthesis. 2-enoyl thioester reductase activity has been linked in Candida tropicalis as essential in maintaining mitiochondrial respiratory function. This ETR family is a part of the medium chain dehydrogenase/reductase family, but lack the zinc coordination sites characteristic of the alcohol dehydrogenases in this family. NAD(P)(H)-dependent oxidoreductases are the major enzymes in the interconversion of alcohols and aldehydes, or ketones. Alcohol dehydrogenase in the liver converts ethanol and NAD+ to acetaldehyde and NADH, while in yeast and some other microorganisms ADH catalyzes the conversion acetaldehyde to ethanol in alcoholic fermentation. ADH is a member of the medium chain alcohol dehydrogenase family (MDR), which has a NAD(P)(H)-binding domain in a Rossmann fold of a beta-alpha form. The NAD(H)-binding region is comprised of 2 structurally similar halves, each of which contacts a mononucleotide. The N-terminal catalytic domain has a distant homology to GroES. These proteins typically form dimers (typically higher plants, mammals) or tetramers (yeast, bacteria), and have 2 tightly bound zinc atoms per subunit, a catalytic zinc at the active site and a structural zinc in a lobe of the catalytic domain. NAD(H) binding occurs in the cleft between the catalytic and coenzyme-binding domains at the active site, and coenzyme binding induces a conformational closing of this cleft. Coenzyme binding typically precedes and contributes to substrate binding. Candida tropicalis enoyl thioester reductase (Etr1p) catalyzes the NADPH-dependent reduction of trans-2-enoyl thioesters in mitochondrial fatty acid synthesis. Etr1p forms homodimers, with each subunit containing a nucleotide-binding Rossmann fold domain and a catalytic domain.


Pssm-ID: 176251 [Multi-domain]  Cd Length: 324  Bit Score: 110.77  E-value: 2.45e-27
                        10        20        30        40        50        60        70        80
                ....*....|....*....|....*....|....*....|....*....|....*....|....*....|....*....|
gi 52783098  42 MRAVVLAGFGG---LNKLRLFRKAMPEPQDGELKIRVKACGLNFIDLMVRQGNIDNPPKTPLVPGFECSGIVEALGDSVK 118
Cdd:cd08291   1 MKALLLEEYGKpleVKELSLPEPEVPEPGPGEVLIKVEAAPINPSDLGFLKGQYGSTKALPVPPGFEGSGTVVAAGGGPL 80
                        90       100       110       120       130       140       150       160
                ....*....|....*....|....*....|....*....|....*....|....*....|....*....|....*....|
gi 52783098 119 G-YEIGDRVMAFVN-YNAWAEVVCTPVEFVYKIPDDMSFSEAAAFPMNFVTAYVMLFEVanLREGMSVLVHSAGGG-VGQ 195
Cdd:cd08291  81 AqSLIGKRVAFLAGsYGTYAEYAVADAQQCLPLPDGVSFEQGASSFVNPLTALGMLETA--REEGAKAVVHTAAASaLGR 158
                       170       180       190       200       210       220       230       240
                ....*....|....*....|....*....|....*....|....*....|....*....|....*....|....*....|
gi 52783098 196 AVAQLCsTVPNVTVFGTASTFKHEAI--KDSVTHLFDRNA-DYVQEVKRISAE-GVDIVLDCLCGDNTGKGLSLLKplgt 271
Cdd:cd08291 159 MLVRLC-KADGIKVINIVRRKEQVDLlkKIGAEYVLNSSDpDFLEDLKELIAKlNATIFFDAVGGGLTGQILLAMP---- 233
                       250       260       270       280       290       300
                ....*....|....*....|....*....|....*....|....*....|....*....|.
gi 52783098 272 yilYGSSNMVTGetksffsfAKSWWQVEKVNPIKLYEENKVIAGFSLLNLLFKQGRAGLIR 332
Cdd:cd08291 234 ---YGSTLYVYG--------YLSGKLDEPIDPVDLIFKNKSIEGFWLTTWLQKLGPEVVKK 283
ETR_like_2 cd08292
2-enoyl thioester reductase (ETR) like proteins, child 2; 2-enoyl thioester reductase (ETR) ...
42-378 5.33e-27

2-enoyl thioester reductase (ETR) like proteins, child 2; 2-enoyl thioester reductase (ETR) like proteins. ETR catalyzes the NADPH-dependent conversion of trans-2-enoyl acyl carrier protein/coenzyme A (ACP/CoA) to acyl-(ACP/CoA) in fatty acid synthesis. 2-enoyl thioester reductase activity has been linked in Candida tropicalis as essential in maintaining mitiochondrial respiratory function. This ETR family is a part of the medium chain dehydrogenase/reductase family, but lack the zinc coordination sites characteristic of the 2-enoyl thioester reductase (ETR) like proteins. ETR catalyzes the NADPH-dependent dependent conversion of trans-2-enoyl acyl carrier protein/coenzyme A (ACP/CoA) to acyl-(ACP/CoA) in fatty acid synthesis. 2-enoyl thioester reductase activity has been linked in Candida tropicalis as essential in maintaining mitiochondrial respiratory function. This ETR family is a part of the medium chain dehydrogenase/reductase family, but lack the zinc coordination sites characteristic of the alcohol dehydrogenases in this family. NAD(P)(H)-dependent oxidoreductases are the major enzymes in the interconversion of alcohols and aldehydes, or ketones. Alcohol dehydrogenase in the liver converts ethanol and NAD+ to acetaldehyde and NADH, while in yeast and some other microorganisms ADH catalyzes the conversion acetaldehyde to ethanol in alcoholic fermentation. ADH is a member of the medium chain alcohol dehydrogenase family (MDR), which has a NAD(P)(H)-binding domain in a Rossmann fold of a beta-alpha form. The NAD(H)-binding region is comprised of 2 structurally similar halves, each of which contacts a mononucleotide. The N-terminal catalytic domain has a distant homology to GroES. These proteins typically form dimers (typically higher plants, mammals) or tetramers (yeast, bacteria), and have 2 tightly bound zinc atoms per subunit, a catalytic zinc at the active site, and a structural zinc in a lobe of the catalytic domain. NAD(H) binding occurs in the cleft between the catalytic and coenzyme-binding domains, at the active site, and coenzyme binding induces a conformational closing of this cleft. Coenzyme binding typically precedes and contributes to substrate binding. Candida tropicalis enoyl thioester reductase (Etr1p) catalyzes the NADPH-dependent reduction of trans-2-enoyl thioesters in mitochondrial fatty acid synthesis. Etr1p forms homodimers, with each subunit containing a nucleotide-binding Rossmann fold domain and a catalytic domain.


Pssm-ID: 176252 [Multi-domain]  Cd Length: 324  Bit Score: 110.12  E-value: 5.33e-27
                        10        20        30        40        50        60        70        80
                ....*....|....*....|....*....|....*....|....*....|....*....|....*....|....*....|
gi 52783098  42 MRAVVLAGFGG-LNKLRLFRKAMPEPQDGELKIRVKACGLNFIDLMVRQGNIDNPPKTPLVPGFECSGIVEALGDSVKGY 120
Cdd:cd08292   1 MRAAVHTQFGDpADVLEIGEVPKPTPGAGEVLVRTTLSPIHNHDLWTIRGTYGYKPELPAIGGSEAVGVVDAVGEGVKGL 80
                        90       100       110       120       130       140       150       160
                ....*....|....*....|....*....|....*....|....*....|....*....|....*....|....*....|
gi 52783098 121 EIGDRVMAFVNYNAWAEVVCTPVEFVYKIPDDMSFSEAAAFPMNFVTAyVMLFEVANLREGMSVLVHSAGGGVGQAVAQL 200
Cdd:cd08292  81 QVGQRVAVAPVHGTWAEYFVAPADGLVPLPDGISDEVAAQLIAMPLSA-LMLLDFLGVKPGQWLIQNAAGGAVGKLVAML 159
                       170       180       190       200       210       220       230       240
                ....*....|....*....|....*....|....*....|....*....|....*....|....*....|....*....|
gi 52783098 201 CST--VPNVTVFGTASTFKhEAIKDSVTHLFD-RNADYVQEVKRIS-AEGVDIVLDCLCGDNTGKGLSLLKPLGTYILYG 276
Cdd:cd08292 160 AAArgINVINLVRRDAGVA-ELRALGIGPVVStEQPGWQDKVREAAgGAPISVALDSVGGKLAGELLSLLGEGGTLVSFG 238
                       250       260       270       280       290       300       310       320
                ....*....|....*....|....*....|....*....|....*....|....*....|....*....|....*....|
gi 52783098 277 SsnmVTGETKSffsfakswwqvekVNPIKLYEENKVIAGFSLLNLLFKQGRAGLIRgVVEKLIGLYNQKKIKPVVDSLWA 356
Cdd:cd08292 239 S---MSGEPMQ-------------ISSGDLIFKQATVRGFWGGRWSQEMSVEYRKR-MIAELLTLALKGQLLLPVEAVFD 301
                       330       340
                ....*....|....*....|..
gi 52783098 357 LEEVKEAMQRIHDRGNIGKLIL 378
Cdd:cd08292 302 LGDAAKAAAASMRPGRAGKVLL 323
Zn_ADH_like2 cd08264
Alcohol dehydrogenases of the MDR family; This group resembles the zinc-dependent alcohol ...
42-377 6.16e-27

Alcohol dehydrogenases of the MDR family; This group resembles the zinc-dependent alcohol dehydrogenases of the medium chain dehydrogenase family. However, this subgroup does not contain the characteristic catalytic zinc site. Also, it contains an atypical structural zinc-binding pattern: DxxCxxCxxxxxxxC. NAD(P)(H)-dependent oxidoreductases are the major enzymes in the interconversion of alcohols and aldehydes, or ketones. Alcohol dehydrogenase in the liver converts ethanol and NAD+ to acetaldehyde and NADH, while in yeast and some other microorganisms ADH catalyzes the conversion acetaldehyde to ethanol in alcoholic fermentation. ADH is a member of the medium chain alcohol dehydrogenase family (MDR), which has a NAD(P)(H)-binding domain in a Rossmann fold of a beta-alpha form. The NAD(H)-binding region is comprised of 2 structurally similar halves, each of which contacts a mononucleotide. A GxGxxG motif after the first mononucleotide contact half allows the close contact of the coenzyme with the ADH backbone. The N-terminal catalytic domain has a distant homology to GroES. These proteins typically form dimers (typically higher plants, mammals) or tetramers (yeast, bacteria), and have 2 tightly bound zinc atoms per subunit, a catalytic zinc at the active site and a structural zinc in a lobe of the catalytic domain. NAD(H)-binding occurs in the cleft between the catalytic and coenzyme-binding domains at the active site, and coenzyme binding induces a conformational closing of this cleft. Coenzyme binding typically precedes and contributes to substrate binding. In human ADH catalysis, the zinc ion helps coordinate the alcohol, followed by deprotonation of a histidine, the ribose of NAD, a serine, then the alcohol, which allows the transfer of a hydride to NAD+, creating NADH and a zinc-bound aldehyde or ketone. In yeast and some bacteria, the active site zinc binds an aldehyde, polarizing it, and leading to the reverse reaction.


Pssm-ID: 176225 [Multi-domain]  Cd Length: 325  Bit Score: 109.75  E-value: 6.16e-27
                        10        20        30        40        50        60        70        80
                ....*....|....*....|....*....|....*....|....*....|....*....|....*....|....*....|
gi 52783098  42 MRAVVLAGFGgLNKLRLFRKAMPEPQDGELKIRVKACGLNFIDLMVrqgnIDNPPKTPL--VPGFECSGIVEALGDSVKG 119
Cdd:cd08264   1 MKALVFEKSG-IENLKVEDVKDPKPGPGEVLIRVKMAGVNPVDYNV----INAVKVKPMphIPGAEFAGVVEEVGDHVKG 75
                        90       100       110       120       130       140       150       160
                ....*....|....*....|....*....|....*....|....*....|....*....|....*....|....*....|
gi 52783098 120 YEIGDRV---------------------------MAFVNYNAWAEVVCTPVEFVYKIPDDMSFSEAAAFPMNFVTAYVML 172
Cdd:cd08264  76 VKKGDRVvvynrvfdgtcdmclsgnemlcrnggiIGVVSNGGYAEYIVVPEKNLFKIPDSISDELAASLPVAALTAYHAL 155
                       170       180       190       200       210       220       230       240
                ....*....|....*....|....*....|....*....|....*....|....*....|....*....|....*....|
gi 52783098 173 FEvANLREGMSVLVHSAGGGVGQAVAQLcstvpnvtvfgtASTFKHEAI----KDSVThlfDRNADYV-------QEVKR 241
Cdd:cd08264 156 KT-AGLGPGETVVVFGASGNTGIFAVQL------------AKMMGAEVIavsrKDWLK---EFGADEVvdydeveEKVKE 219
                       250       260       270       280       290       300       310       320
                ....*....|....*....|....*....|....*....|....*....|....*....|....*....|....*....|
gi 52783098 242 ISaEGVDIVLDCLCGDNTGKGLSLLKPLGTYILYGSsnmVTGetksffsfakswwQVEKVNPIKLY-EENKVIagfslln 320
Cdd:cd08264 220 IT-KMADVVINSLGSSFWDLSLSVLGRGGRLVTFGT---LTG-------------GEVKLDLSDLYsKQISII------- 275
                       330       340       350       360       370
                ....*....|....*....|....*....|....*....|....*....|....*...
gi 52783098 321 llfkqgraGLIRGVVEKLIGLYN-QKKIKPVVDSLWALEEVKEAMQRIHDRGNIGKLI 377
Cdd:cd08264 276 --------GSTGGTRKELLELVKiAKDLKVKVWKTFKLEEAKEALKELFSKERDGRIL 325
PRK13771 PRK13771
putative alcohol dehydrogenase; Provisional
42-379 5.45e-26

putative alcohol dehydrogenase; Provisional


Pssm-ID: 184316 [Multi-domain]  Cd Length: 334  Bit Score: 107.43  E-value: 5.45e-26
                         10        20        30        40        50        60        70        80
                 ....*....|....*....|....*....|....*....|....*....|....*....|....*....|....*....|
gi 52783098   42 MRAVVLAGFGGLNKLRLFRKamPEPQDGELKIRVKACGLNFIDLMVRQGnIDNPPKTPLVPGFECSGIVEALGDSVKGYE 121
Cdd:PRK13771   1 MKAVILPGFKQGYRIEEVPD--PKPGKDEVVIKVNYAGLCYRDLLQLQG-FYPRMKYPVILGHEVVGTVEEVGENVKGFK 77
                         90       100       110       120       130       140       150       160
                 ....*....|....*....|....*....|....*....|....*....|....*....|....*....|....*....|
gi 52783098  122 IGDRV--MAFV-------------NY------------NAWAEVVCTPVEFVYKIPDDMSFSEAAAFPMNFVTAYVMLFe 174
Cdd:PRK13771  78 PGDRVasLLYApdgtceycrsgeeAYcknrlgygeeldGFFAEYAKVKVTSLVKVPPNVSDEGAVIVPCVTGMVYRGLR- 156
                        170       180       190       200       210       220       230       240
                 ....*....|....*....|....*....|....*....|....*....|....*....|....*....|....*....|
gi 52783098  175 VANLREGMSVLVHSAGGGVGQAVAQLCSTVPNVTVFGTASTFKHEAIKDSVTHLFDRNAdYVQEVKRIsaEGVDIVLDCL 254
Cdd:PRK13771 157 RAGVKKGETVLVTGAGGGVGIHAIQVAKALGAKVIAVTSSESKAKIVSKYADYVIVGSK-FSEEVKKI--GGADIVIETV 233
                        250       260       270       280       290       300       310       320
                 ....*....|....*....|....*....|....*....|....*....|....*....|....*....|....*....|
gi 52783098  255 CGDNTGKGLSLLKPLGTYILYGSsnmvtgetksffsfakswwqvekVNPIKLYEenkVIAGFSLLNLLFKQGRAGLIRGV 334
Cdd:PRK13771 234 GTPTLEESLRSLNMGGKIIQIGN-----------------------VDPSPTYS---LRLGYIILKDIEIIGHISATKRD 287
                        330       340       350       360
                 ....*....|....*....|....*....|....*....|....*
gi 52783098  335 VEKLIGLYNQKKIKPVVDSLWALEEVKEAMQRIHDRGNIGKLILD 379
Cdd:PRK13771 288 VEEALKLVAEGKIKPVIGAEVSLSEIDKALEELKDKSRIGKILVK 332
AL_MDR cd08252
Arginate lyase and other MDR family members; This group contains a structure identified as an ...
42-253 5.40e-25

Arginate lyase and other MDR family members; This group contains a structure identified as an arginate lyase. Other members are identified quinone reductases, alginate lyases, and other proteins related to the zinc-dependent dehydrogenases/reductases. QOR catalyzes the conversion of a quinone and NAD(P)H to a hydroquinone and NAD(P+. Quinones are cyclic diones derived from aromatic compounds. Membrane bound QOR acts in the respiratory chains of bacteria and mitochondria, while soluble QOR acts to protect from toxic quinones (e.g. DT-diaphorase) or as a soluble eye-lens protein in some vertebrates (e.g. zeta-crystalin). QOR reduces quinones through a semi-quinone intermediate via a NAD(P)H-dependent single electron transfer. QOR is a member of the medium chain dehydrogenase/reductase family, but lacks the zinc-binding sites of the prototypical alcohol dehydrogenases of this group. Alcohol dehydrogenase in the liver converts ethanol and NAD+ to acetaldehyde and NADH, while in yeast and some other microorganisms ADH catalyzes the conversion acetaldehyde to ethanol in alcoholic fermentation. ADH is a member of the medium chain alcohol dehydrogenase family (MDR), which has a NAD(P)(H)-binding domain in a Rossmann fold of a beta-alpha form. The NAD(H)-binding region is comprised of 2 structurally similar halves, each of which contacts a mononucleotide. The N-terminal catalytic domain has a distant homology to GroES. These proteins typically form dimers (typically higher plants, mammals) or tetramers (yeast, bacteria), and have 2 tightly bound zinc atoms per subunit, a catalytic zinc at the active site and a structural zinc in a lobe of the catalytic domain. NAD(H) binding occurs in the cleft between the catalytic and coenzyme-binding domains at the active site, and coenzyme binding induces a conformational closing of this cleft. Coenzyme binding typically precedes and contributes to substrate binding. In human ADH catalysis, the zinc ion helps coordinate the alcohol, followed by deprotonation of a histidine, the ribose of NAD, a serine, then the alcohol, which allows the transfer of a hydride to NAD+, creating NADH and a zinc-bound aldehyde or ketone. In yeast and some bacteria, the active site zinc binds an aldehyde, polarizing it, and leading to the reverse reaction.


Pssm-ID: 176214 [Multi-domain]  Cd Length: 336  Bit Score: 104.53  E-value: 5.40e-25
                        10        20        30        40        50        60        70        80
                ....*....|....*....|....*....|....*....|....*....|....*....|....*....|....*....|
gi 52783098  42 MRAVVLAGFGGL---NKLRLFRKAMPEPQDGELKIRVKACGLNFIDLMVRQGnIDNPPKTPLVPGFECSGIVEALGDSVK 118
Cdd:cd08252   1 MKAIGFTQPLPItdpDSLIDIELPKPVPGGRDLLVRVEAVSVNPVDTKVRAG-GAPVPGQPKILGWDASGVVEAVGSEVT 79
                        90       100       110       120       130       140       150       160
                ....*....|....*....|....*....|....*....|....*....|....*....|....*....|....*....|
gi 52783098 119 GYEIGDRVMafvnY---------NAwaevvctpvEF-------VYKIPDDMSFSEAAAFPMNFVTAYVMLFE-----VAN 177
Cdd:cd08252  80 LFKVGDEVY----YagditrpgsNA---------EYqlvderiVGHKPKSLSFAEAAALPLTSLTAWEALFDrlgisEDA 146
                       170       180       190       200       210       220       230       240
                ....*....|....*....|....*....|....*....|....*....|....*....|....*....|....*....|
gi 52783098 178 LREGMSVLVHSAGGGVGQAVAQLCSTVPNVTVFGTASTfkheaiKDSVTHLFDRNADYV--------QEVKRISAEGVDI 249
Cdd:cd08252 147 ENEGKTLLIIGGAGGVGSIAIQLAKQLTGLTVIATASR------PESIAWVKELGADHVinhhqdlaEQLEALGIEPVDY 220

                ....
gi 52783098 250 VLDC 253
Cdd:cd08252 221 IFCL 224
AST1_like cd08247
AST1 is a cytoplasmic protein associated with the periplasmic membrane in yeast; This group ...
67-380 3.80e-24

AST1 is a cytoplasmic protein associated with the periplasmic membrane in yeast; This group contains members identified in targeting of yeast membrane proteins ATPase. AST1 is a cytoplasmic protein associated with the periplasmic membrane in yeast, identified as a multicopy suppressor of pma1 mutants which cause temperature sensitive growth arrest due to the inability of ATPase to target to the cell surface. This family is homologous to the medium chain family of dehydrogenases and reductases. Medium chain dehydrogenases/reductase (MDR)/zinc-dependent alcohol dehydrogenase-like family, which contains the zinc-dependent alcohol dehydrogenase (ADH-Zn) and related proteins, is a diverse group of proteins related to the first identified member, class I mammalian ADH. MDRs display a broad range of activities and are distinguished from the smaller short chain dehydrogenases (~ 250 amino acids vs. the ~ 350 amino acids of the MDR). The MDR proteins have 2 domains: a C-terminal NAD(P) binding-Rossmann fold domain of an beta-alpha form and an N-terminal catalytic domain with distant homology to GroES.


Pssm-ID: 176209 [Multi-domain]  Cd Length: 352  Bit Score: 102.35  E-value: 3.80e-24
                        10        20        30        40        50        60        70        80
                ....*....|....*....|....*....|....*....|....*....|....*....|....*....|....*....|
gi 52783098  67 QDGELKIRVKACGLNFIDLMVRQGNIDNPPKTPLVPGFECSGIVEALGDSVK-GYEIGDRVMA-FVNYNAWAEVVCT--- 141
Cdd:cd08247  27 KDNEIVVKVHAAALNPVDLKLYNSYTFHFKVKEKGLGRDYSGVIVKVGSNVAsEWKVGDEVCGiYPHPYGGQGTLSQyll 106
                        90       100       110       120       130       140       150       160
                ....*....|....*....|....*....|....*....|....*....|....*....|....*....|....*....|
gi 52783098 142 --PVEFVYKI---PDDMSFSEAAAFPMNFVTAYVMLFEV-ANLREGMSVLVHSAGGGVGQAVAQLCSTVPNV-TVFGTAS 214
Cdd:cd08247 107 vdPKKDKKSItrkPENISLEEAAAWPLVLGTAYQILEDLgQKLGPDSKVLVLGGSTSVGRFAIQLAKNHYNIgTVVGTCS 186
                       170       180       190       200       210       220       230       240
                ....*....|....*....|....*....|....*....|....*....|....*....|....*....|....*....|
gi 52783098 215 TFKHEAIKDS-VTHLFDRNA--------DYVQEVKriSAEGVDIVLDClCGDNT--GKGLSLLKPL---GTYIlygssnM 280
Cdd:cd08247 187 SRSAELNKKLgADHFIDYDAhsgvkllkPVLENVK--GQGKFDLILDC-VGGYDlfPHINSILKPKsknGHYV------T 257
                       250       260       270       280       290       300       310       320
                ....*....|....*....|....*....|....*....|....*....|....*....|....*....|....*....|
gi 52783098 281 VTGETK-SFFSFAKSWWQVEKVNPIKLyeenkviagFSLLNLL---FKQGRAGLIRGVVEKLIGLYNQKKIKPVVDSLWA 356
Cdd:cd08247 258 IVGDYKaNYKKDTFNSWDNPSANARKL---------FGSLGLWsynYQFFLLDPNADWIEKCAELIADGKVKPPIDSVYP 328
                       330       340
                ....*....|....*....|....
gi 52783098 357 LEEVKEAMQRIHDRGNIGKLILDV 380
Cdd:cd08247 329 FEDYKEAFERLKSNRAKGKVVIKV 352
MDR4 cd08270
Medium chain dehydrogenases/reductase (MDR)/zinc-dependent alcohol dehydrogenase-like family; ...
42-278 4.51e-23

Medium chain dehydrogenases/reductase (MDR)/zinc-dependent alcohol dehydrogenase-like family; This group is a member of the medium chain dehydrogenases/reductase (MDR)/zinc-dependent alcohol dehydrogenase-like family, but lacks the zinc-binding sites of the zinc-dependent alcohol dehydrogenases. The medium chain dehydrogenases/reductase (MDR)/zinc-dependent alcohol dehydrogenase-like family, which contains the zinc-dependent alcohol dehydrogenase (ADH-Zn) and related proteins, is a diverse group of proteins related to the first identified member, class I mammalian ADH. MDRs display a broad range of activities and are distinguished from the smaller short chain dehydrogenases (~ 250 amino acids vs. the ~ 350 amino acids of the MDR). The MDR proteins have 2 domains: a C-terminal NAD(P)-binding Rossmann fold domain of a beta-alpha form and an N-terminal catalytic domain with distant homology to GroES. The MDR group contains a host of activities, including the founding alcohol dehydrogenase (ADH), quinone reductase, sorbitol dehydrogenase, formaldehyde dehydrogenase, butanediol DH, ketose reductase, cinnamyl reductase, and numerous others. The zinc-dependent alcohol dehydrogenases (ADHs) catalyze the NAD(P)(H)-dependent interconversion of alcohols to aldehydes or ketones. Active site zinc has a catalytic role, while structural zinc aids in stability. ADH-like proteins typically form dimers (typically higher plants, mammals) or tetramers (yeast, bacteria), and generally have 2 tightly bound zinc atoms per subunit. The active site zinc is coordinated by a histidine, two cysteines, and a water molecule. The second zinc seems to play a structural role, affects subunit interactions, and is typically coordinated by 4 cysteines.


Pssm-ID: 176231 [Multi-domain]  Cd Length: 305  Bit Score: 98.60  E-value: 4.51e-23
                        10        20        30        40        50        60        70        80
                ....*....|....*....|....*....|....*....|....*....|....*....|....*....|....*....|
gi 52783098  42 MRAVVLAGFGGLNkLRLFRKAMPEPQDGELKIRVKACGLNFIDLmvrqgNIDNPPKTPLVPGFECSGIVEALGDSVKGYE 121
Cdd:cd08270   1 MRALVVDPDAPLR-LRLGEVPDPQPAPHEALVRVAAISLNRGEL-----KFAAERPDGAVPGWDAAGVVERAAADGSGPA 74
                        90       100       110       120       130       140       150       160
                ....*....|....*....|....*....|....*....|....*....|....*....|....*....|....*....|
gi 52783098 122 IGDRVMAFVNYNAWAEVVCTPVEFVYKIPDDMSFSEAAAFPMNFVTAYVMLFEVANLReGMSVLVHSAGGGVGQAVAQLc 201
Cdd:cd08270  75 VGARVVGLGAMGAWAELVAVPTGWLAVLPDGVSFAQAATLPVAGVTALRALRRGGPLL-GRRVLVTGASGGVGRFAVQL- 152
                       170       180       190       200       210       220       230
                ....*....|....*....|....*....|....*....|....*....|....*....|....*....|....*..
gi 52783098 202 STVPNVTVFGTASTFKHEAikdsvTHLFDRNADYVQEVKRISAEGVDIVLDCLCGDNTGKGLSLLKPLGTYILYGSS 278
Cdd:cd08270 153 AALAGAHVVAVVGSPARAE-----GLRELGAAEVVVGGSELSGAPVDLVVDSVGGPQLARALELLAPGGTVVSVGSS 224
sugar_DH cd08236
NAD(P)-dependent sugar dehydrogenases; This group contains proteins identified as sorbitol ...
42-253 5.12e-23

NAD(P)-dependent sugar dehydrogenases; This group contains proteins identified as sorbitol dehydrogenases and other sugar dehydrogenases of the medium-chain dehydrogenase/reductase family (MDR), which includes zinc-dependent alcohol dehydrogenase and related proteins. Sorbitol and aldose reductase are NAD(+) binding proteins of the polyol pathway, which interconverts glucose and fructose. Sorbitol dehydrogenase is tetrameric and has a single catalytic zinc per subunit. NAD(P)(H)-dependent oxidoreductases are the major enzymes in the interconversion of alcohols and aldehydes, or ketones. Related proteins include threonine dehydrogenase, formaldehyde dehydrogenase, and butanediol dehydrogenase. The medium chain alcohol dehydrogenase family (MDR) has a NAD(P)(H)-binding domain in a Rossmann fold of a beta-alpha form. The N-terminal region typically has an all-beta catalytic domain. These proteins typically form dimers (typically higher plants, mammals) or tetramers (yeast, bacteria), and have 2 tightly bound zinc atoms per subunit. Horse liver alcohol dehydrogenase is a dimeric enzyme and each subunit has two domains. The NAD binding domain is in a Rossmann fold and the catalytic domain contains a zinc ion to which substrates bind. There is a cleft between the domains that closes upon formation of the ternary complex.


Pssm-ID: 176198 [Multi-domain]  Cd Length: 343  Bit Score: 99.22  E-value: 5.12e-23
                        10        20        30        40        50        60        70        80
                ....*....|....*....|....*....|....*....|....*....|....*....|....*....|....*....|
gi 52783098  42 MRAVVLAGfggLNKLRLFRKAMPEPQDGELKIRVKACGLNFIDLMVRQGNidNPPKTPLVPGFECSGIVEALGDSVKGYE 121
Cdd:cd08236   1 MKALVLTG---PGDLRYEDIPKPEPGPGEVLVKVKACGICGSDIPRYLGT--GAYHPPLVLGHEFSGTVEEVGSGVDDLA 75
                        90       100       110       120       130       140       150       160
                ....*....|....*....|....*....|....*....|....*....|....*....|....*....|....*....|
gi 52783098 122 IGDRVMAF-------------------VNYN--------AWAEVVCTPVEFVYKIPDDMSFSEAAAF-PMnfvTAYVMLF 173
Cdd:cd08236  76 VGDRVAVNpllpcgkceyckkgeyslcSNYDyigsrrdgAFAEYVSVPARNLIKIPDHVDYEEAAMIePA---AVALHAV 152
                       170       180       190       200       210       220       230       240
                ....*....|....*....|....*....|....*....|....*....|....*....|....*....|....*....|
gi 52783098 174 EVANLREGMSVLVhSAGGGVGQAVAQLCST--VPNVTVFGTASTFKHEAIKDSVTHLFDRNADYVQEVKR-ISAEGVDIV 250
Cdd:cd08236 153 RLAGITLGDTVVV-IGAGTIGLLAIQWLKIlgAKRVIAVDIDDEKLAVARELGADDTINPKEEDVEKVRElTEGRGADLV 231

                ...
gi 52783098 251 LDC 253
Cdd:cd08236 232 IEA 234
CAD3 cd08297
Cinnamyl alcohol dehydrogenases (CAD); These alcohol dehydrogenases are related to the ...
42-380 5.97e-23

Cinnamyl alcohol dehydrogenases (CAD); These alcohol dehydrogenases are related to the cinnamyl alcohol dehydrogenases (CAD), members of the medium chain dehydrogenase/reductase family. NAD(P)(H)-dependent oxidoreductases are the major enzymes in the interconversion of alcohols and aldehydes, or ketones. Cinnamyl alcohol dehydrogenases (CAD) reduce cinnamaldehydes to cinnamyl alcohols in the last step of monolignal metabolism in plant cells walls. CAD binds 2 zinc ions and is NADPH- dependent. CAD family members are also found in non-plant species, e.g. in yeast where they have an aldehyde reductase activity. The medium chain dehydrogenases/reductase (MDR)/zinc-dependent alcohol dehydrogenase-like family, which contains the zinc-dependent alcohol dehydrogenase (ADH-Zn) and related proteins, is a diverse group of proteins related to the first identified member, class I mammalian ADH. MDRs display a broad range of activities and are distinguished from the smaller short chain dehydrogenases (~ 250 amino acids vs. the ~ 350 amino acids of the MDR). The MDR proteins have 2 domains: a C-terminal NAD(P) binding-Rossmann fold domain of a beta-alpha form and an N-terminal catalytic domain with distant homology to GroES. The MDR group contains a host of activities, including the founding alcohol dehydrogenase (ADH), quinone reductase, sorbitol dehydrogenase, formaldehyde dehydrogenase, butanediol DH, ketose reductase, cinnamyl reductase, and numerous others. The zinc-dependent alcohol dehydrogenases (ADHs) catalyze the NAD(P)(H)-dependent interconversion of alcohols to aldehydes or ketones. Active site zinc has a catalytic role, while structural zinc aids in stability. ADH-like proteins typically form dimers (typically higher plants, mammals) or tetramers (yeast, bacteria), and generally have 2 tightly bound zinc atoms per subunit. The active site zinc is coordinated by a histidine, two cysteines, and a water molecule. The second zinc seems to play a structural role, affects subunit interactions, and is typically coordinated by 4 cysteines.


Pssm-ID: 176257 [Multi-domain]  Cd Length: 341  Bit Score: 98.76  E-value: 5.97e-23
                        10        20        30        40        50        60        70        80
                ....*....|....*....|....*....|....*....|....*....|....*....|....*....|....*....|
gi 52783098  42 MRAVVLAGFGGlNKLRLFRKAMPEPQDGELKIRVKACGLNFIDLMVRQGNIDNPPKTPLVPGFECSGIVEALGDSVKGYE 121
Cdd:cd08297   1 MKAAVVEEFGE-KPYEVKDVPVPEPGPGEVLVKLEASGVCHTDLHAALGDWPVKPKLPLIGGHEGAGVVVAVGPGVSGLK 79
                        90       100       110       120       130       140       150       160
                ....*....|....*....|....*....|....*....|....*....|....*....|....*....|....*....|
gi 52783098 122 IGDRV-------------------------MAFVNYNA---WAEVVCTPVEFVYKIPDDMSFSEAAAFPMNFVTAYVMLf 173
Cdd:cd08297  80 VGDRVgvkwlydacgkceycrtgdetlcpnQKNSGYTVdgtFAEYAIADARYVTPIPDGLSFEQAAPLLCAGVTVYKAL- 158
                       170       180       190       200       210       220       230       240
                ....*....|....*....|....*....|....*....|....*....|....*....|....*....|....*....|
gi 52783098 174 EVANLREGMSVLVHSAGGGVG-QAVaQLCSTVP-NVTVFGTASTfKHEAIKDS-VTHLFD-RNADYVQEVKRISA-EGVD 248
Cdd:cd08297 159 KKAGLKPGDWVVISGAGGGLGhLGV-QYAKAMGlRVIAIDVGDE-KLELAKELgADAFVDfKKSDDVEAVKELTGgGGAH 236
                       250       260       270       280       290       300       310       320
                ....*....|....*....|....*....|....*....|....*....|....*....|....*....|....*....|
gi 52783098 249 IVLdCLCGDNT--GKGLSLLKPLGTYILYGSsnmvtgetksffsfakswwqvekvnPiklyeeNKVIAGFSLLNLLFKQG 326
Cdd:cd08297 237 AVV-VTAVSAAayEQALDYLRPGGTLVCVGL-------------------------P------PGGFIPLDPFDLVLRGI 284
                       330       340       350       360       370       380
                ....*....|....*....|....*....|....*....|....*....|....*....|.
gi 52783098 327 RaglIRGV-------VEKLIGLYNQKKIKPVVdSLWALEEVKEAMQRIHDRGNIGKLILDV 380
Cdd:cd08297 285 T---IVGSlvgtrqdLQEALEFAARGKVKPHI-QVVPLEDLNEVFEKMEEGKIAGRVVVDF 341
arabinose_DH_like cd05284
D-arabinose dehydrogenase; This group contains arabinose dehydrogenase (AraDH) and related ...
42-312 1.78e-22

D-arabinose dehydrogenase; This group contains arabinose dehydrogenase (AraDH) and related alcohol dehydrogenases. AraDH is a member of the medium chain dehydrogenase/reductase family and catalyzes the NAD(P)-dependent oxidation of D-arabinose and other pentoses, the initial step in the metabolism of d-arabinose into 2-oxoglutarate. Like the alcohol dehydrogenases, AraDH binds a zinc in the catalytic cleft as well as a distal structural zinc. AraDH forms homotetramers as a dimer of dimers. AraDH replaces a conserved catalytic His with replace with Arg, compared to the canonical ADH site. NAD(P)(H)-dependent oxidoreductases are the major enzymes in the interconversion of alcohols and aldehydes, or ketones. Alcohol dehydrogenase in the liver converts ethanol and NAD+ to acetaldehyde and NADH, while in yeast and some other microorganisms ADH catalyzes the conversion acetaldehyde to ethanol in alcoholic fermentation. ADH is a member of the medium chain alcohol dehydrogenase family (MDR), which has a NAD(P)(H)-binding domain in a Rossmann fold of a beta-alpha form. The NAD(H)-binding region is comprised of 2 structurally similar halves, each of which contacts a mononucleotide. A GxGxxG motif after the first mononucleotide contact half allows the close contact of the coenzyme with the ADH backbone. The N-terminal catalytic domain has a distant homology to GroES. These proteins typically form dimers (typically higher plants, mammals) or tetramers (yeast, bacteria), and have 2 tightly bound zinc atoms per subunit, a catalytic zinc at the active site and a structural zinc in a lobe of the catalytic domain. NAD(H) binding occurs in the cleft between the catalytic and coenzyme-binding domains at the active site, and coenzyme binding induces a conformational closing of this cleft. Coenzyme binding typically precedes and contributes to substrate binding. In human ADH catalysis, the zinc ion helps coordinate the alcohol, followed by deprotonation of a histidine, the ribose of NAD, a serine, then the alcohol, which allows the transfer of a hydride to NAD+, creating NADH and a zinc-bound aldehyde or ketone. In yeast and some bacteria, the active site zinc binds an aldehyde, polarizing it, and leading to the reverse reaction.


Pssm-ID: 176187 [Multi-domain]  Cd Length: 340  Bit Score: 97.63  E-value: 1.78e-22
                        10        20        30        40        50        60        70        80
                ....*....|....*....|....*....|....*....|....*....|....*....|....*....|....*....|
gi 52783098  42 MRAVVLAGFGGLnkLRLFRKAMPEPQDGELKIRVKACGLNFIDLMVRQGNIDN--PPKTPLVPGFECSGIVEALGDSVKG 119
Cdd:cd05284   1 MKAARLYEYGKP--LRLEDVPVPEPGPGQVLVRVGGAGVCHSDLHVIDGVWGGilPYKLPFTLGHENAGWVEEVGSGVDG 78
                        90       100       110       120       130       140       150       160
                ....*....|....*....|....*....|....*....|....*....|....*....|....*....|....*....|
gi 52783098 120 YEIGDRVM------------------------AFVNYNAW---AEVVCTPVEFVYKIPDDMSFSEAAAFPMNFVTAYVML 172
Cdd:cd05284  79 LKEGDPVVvhppwgcgtcrycrrgeenycenaRFPGIGTDggfAEYLLVPSRRLVKLPRGLDPVEAAPLADAGLTAYHAV 158
                       170       180       190       200       210       220       230       240
                ....*....|....*....|....*....|....*....|....*....|....*....|....*....|....*....|
gi 52783098 173 FEVAN-LREGMSVLVHSAgGGVGQAVAQLCSTVPNVTVFGTastfkheAIKDSVTHLFDRN-ADYV--------QEVKRI 242
Cdd:cd05284 159 KKALPyLDPGSTVVVIGV-GGLGHIAVQILRALTPATVIAV-------DRSEEALKLAERLgADHVlnasddvvEEVREL 230
                       250       260       270       280       290       300       310
                ....*....|....*....|....*....|....*....|....*....|....*....|....*....|....*...
gi 52783098 243 -SAEGVDIVLDCLCGDNT-GKGLSLLKPLGTYILYGSSNMVTGETKSF----FSFAKSWW--QVEKVNPIKLYEENKV 312
Cdd:cd05284 231 tGGRGADAVIDFVGSDETlALAAKLLAKGGRYVIVGYGGHGRLPTSDLvpteISVIGSLWgtRAELVEVVALAESGKV 308
CAD cd08245
Cinnamyl alcohol dehydrogenases (CAD) and related proteins; Cinnamyl alcohol dehydrogenases ...
43-276 9.75e-22

Cinnamyl alcohol dehydrogenases (CAD) and related proteins; Cinnamyl alcohol dehydrogenases (CAD), members of the medium chain dehydrogenase/reductase family, reduce cinnamaldehydes to cinnamyl alcohols in the last step of monolignal metabolism in plant cells walls. CAD binds 2 zinc ions and is NADPH- dependent. CAD family members are also found in non-plant species, e.g. in yeast where they have an aldehyde reductase activity. The medium chain dehydrogenases/reductase (MDR)/zinc-dependent alcohol dehydrogenase-like family, which contains the zinc-dependent alcohol dehydrogenase (ADH-Zn) and related proteins, is a diverse group of proteins related to the first identified member, class I mammalian ADH. MDRs display a broad range of activities and are distinguished from the smaller short chain dehydrogenases (~ 250 amino acids vs. the ~ 350 amino acids of the MDR). The MDR proteins have 2 domains: a C-terminal NAD(P) binding-Rossmann fold domain of a beta-alpha form and an N-terminal catalytic domain with distant homology to GroES. The MDR group contains a host of activities, including the founding alcohol dehydrogenase (ADH), quinone reductase, sorbitol dehydrogenase, formaldehyde dehydrogenase, butanediol DH, ketose reductase, cinnamyl reductase, and numerous others. The zinc-dependent alcohol dehydrogenases (ADHs) catalyze the NAD(P)(H)-dependent interconversion of alcohols to aldehydes, or ketones. Active site zinc has a catalytic role, while structural zinc aids in stability. ADH-like proteins typically form dimers (typically higher plants, mammals) or tetramers (yeast, bacteria), and generally have 2 tightly bound zinc atoms per subunit. The active site zinc is coordinated by a histidine, two cysteines, and a water molecule. The second zinc seems to play a structural role, affects subunit interactions, and is typically coordinated by 4 cysteines.


Pssm-ID: 176207 [Multi-domain]  Cd Length: 330  Bit Score: 95.08  E-value: 9.75e-22
                        10        20        30        40        50        60        70        80
                ....*....|....*....|....*....|....*....|....*....|....*....|....*....|....*....|
gi 52783098  43 RAVVLAGFGGlnKLRLFRKAMPEPQDGELKIRVKACGLNFIDLMVRQGNIdNPPKTPLVPGFECSGIVEALGDSVKGYEI 122
Cdd:cd08245   1 KAAVVHAAGG--PLEPEEVPVPEPGPGEVLIKIEACGVCHTDLHAAEGDW-GGSKYPLVPGHEIVGEVVEVGAGVEGRKV 77
                        90       100       110       120       130       140       150       160
                ....*....|....*....|....*....|....*....|....*....|....*....|....*....|....*....|
gi 52783098 123 GDRV----------------------------MAFVNYNAWAEVVCTPVEFVYKIPDDMSFSEAAAFPMNFVTAYVMLfE 174
Cdd:cd08245  78 GDRVgvgwlvgscgrceycrrglenlcqkavnTGYTTQGGYAEYMVADAEYTVLLPDGLPLAQAAPLLCAGITVYSAL-R 156
                       170       180       190       200       210       220       230       240
                ....*....|....*....|....*....|....*....|....*....|....*....|....*....|....*....|
gi 52783098 175 VANLREGMSVLVhSAGGGVGQAVAQLCSTVPNVTVFGTASTFKHEAIKDSVTHLF--DRNADYVQEvkriSAEGVDIVLD 252
Cdd:cd08245 157 DAGPRPGERVAV-LGIGGLGHLAVQYARAMGFETVAITRSPDKRELARKLGADEVvdSGAELDEQA----AAGGADVILV 231
                       250       260
                ....*....|....*....|....*
gi 52783098 253 CL-CGDNTGKGLSLLKPLGTYILYG 276
Cdd:cd08245 232 TVvSGAAAEAALGGLRRGGRIVLVG 256
iditol_2_DH_like cd08235
L-iditol 2-dehydrogenase; Putative L-iditol 2-dehydrogenase based on annotation of some ...
42-276 5.31e-21

L-iditol 2-dehydrogenase; Putative L-iditol 2-dehydrogenase based on annotation of some members in this subgroup. L-iditol 2-dehydrogenase catalyzes the NAD+-dependent conversion of L-iditol to L-sorbose in fructose and mannose metabolism. This enzyme is related to sorbitol dehydrogenase, alcohol dehydrogenase, and other medium chain dehydrogenase/reductases. The zinc-dependent alcohol dehydrogenase (ADH-Zn)-like family of proteins is a diverse group of proteins related to the first identified member, class I mammalian ADH. This group is also called the medium chain dehydrogenases/reductase family (MDR) to highlight its broad range of activities and to distinguish from the smaller short chain dehydrogenases (~ 250 amino acids vs. the ~ 350 amino acids of the MDR). The MDR proteins have 2 domains: a C-terminal NAD(P) binding-Rossmann fold domain of a beta-alpha form and an N-terminal GroES-like catalytic domain. The MDR group contains a host of activities, including the founding alcohol dehydrogenase (ADH), quinone reductase, sorbitol dehydrogenase, formaldehyde dehydrogenase, butanediol DH, ketose reductase, cinnamyl reductase, and numerous others. The zinc-dependent alcohol dehydrogenases (ADHs) catalyze the NAD(P)(H)-dependent interconversion of alcohols to aldehydes or ketones. Active site zinc has a catalytic role, while structural zinc aids in stability. ADH-like proteins typically form dimers (typically higher plants, mammals) or tetramers (yeast, bacteria), and generally have 2 tightly bound zinc atoms per subunit. The active site zinc is coordinated by a histidine, two cysteines, and a water molecule. The second zinc seems to play a structural role, affects subunit interactions, and is typically coordinated by 4 cysteines.


Pssm-ID: 176197 [Multi-domain]  Cd Length: 343  Bit Score: 93.43  E-value: 5.31e-21
                        10        20        30        40        50        60        70        80
                ....*....|....*....|....*....|....*....|....*....|....*....|....*....|....*....|
gi 52783098  42 MRAVVLAGFgglNKLRLFRKAMPEPQDGELKIRVKACGLNFIDLMVRQGNiDNPPKTPLVPGFECSGIVEALGDSVKGYE 121
Cdd:cd08235   1 MKAAVLHGP---NDVRLEEVPVPEPGPGEVLVKVRACGICGTDVKKIRGG-HTDLKPPRILGHEIAGEIVEVGDGVTGFK 76
                        90       100       110       120       130       140       150       160
                ....*....|....*....|....*....|....*....|....*....|....*....|....*....|....*....|
gi 52783098 122 IGDRVMAFV-------------NYN--------------AWAEVVCTPVEFV-----YKIPDDMSFSEAA-AFPMNFVTA 168
Cdd:cd08235  77 VGDRVFVAPhvpcgechyclrgNENmcpnykkfgnlydgGFAEYVRVPAWAVkrggvLKLPDNVSFEEAAlVEPLACCIN 156
                       170       180       190       200       210       220       230       240
                ....*....|....*....|....*....|....*....|....*....|....*....|....*....|....*....|
gi 52783098 169 YVmlfEVANLREGMSVLVHSAgGGVGQAVAQLCSTVPNVTVFGT-ASTFKHE-AIKDSVTHLFD-RNADYVQEVKRISA- 244
Cdd:cd08235 157 AQ---RKAGIKPGDTVLVIGA-GPIGLLHAMLAKASGARKVIVSdLNEFRLEfAKKLGADYTIDaAEEDLVEKVRELTDg 232
                       250       260       270
                ....*....|....*....|....*....|....
gi 52783098 245 EGVDIVLDClCGDN--TGKGLSLLKPLGTYILYG 276
Cdd:cd08235 233 RGADVVIVA-TGSPeaQAQALELVRKGGRILFFG 265
hydroxyacyl_CoA_DH cd08254
6-hydroxycyclohex-1-ene-1-carboxyl-CoA dehydrogenase, N-benzyl-3-pyrrolidinol dehydrogenase, ...
42-379 3.04e-20

6-hydroxycyclohex-1-ene-1-carboxyl-CoA dehydrogenase, N-benzyl-3-pyrrolidinol dehydrogenase, and other MDR family members; This group contains enzymes of the zinc-dependent alcohol dehydrogenase family, including members (aka MDR) identified as 6-hydroxycyclohex-1-ene-1-carboxyl-CoA dehydrogenase and N-benzyl-3-pyrrolidinol dehydrogenase. 6-hydroxycyclohex-1-ene-1-carboxyl-CoA dehydrogenase catalyzes the conversion of 6-Hydroxycyclohex-1-enecarbonyl-CoA and NAD+ to 6-Ketoxycyclohex-1-ene-1-carboxyl-CoA,NADH, and H+. This group displays the characteristic catalytic and structural zinc sites of the zinc-dependent alcohol dehydrogenases. NAD(P)(H)-dependent oxidoreductases are the major enzymes in the interconversion of alcohols and aldehydes, or ketones. Alcohol dehydrogenase in the liver converts ethanol and NAD+ to acetaldehyde and NADH, while in yeast and some other microorganisms ADH catalyzes the conversion acetaldehyde to ethanol in alcoholic fermentation. ADH is a member of the medium chain alcohol dehydrogenase family (MDR), which have a NAD(P)(H)-binding domain in a Rossmann fold of a beta-alpha form. The NAD(H)-binding region is comprised of 2 structurally similar halves, each of which contacts a mononucleotide. A GxGxxG motif after the first mononucleotide contact half allows the close contact of the coenzyme with the ADH backbone. The N-terminal catalytic domain has a distant homology to GroES. These proteins typically form dimers (typically higher plants, mammals) or tetramers (yeast, bacteria), and have 2 tightly bound zinc atoms per subunit, a catalytic zinc at the active site and a structural zinc in a lobe of the catalytic domain. NAD(H)-binding occurs in the cleft between the catalytic and coenzyme-binding domains at the active site, and coenzyme binding induces a conformational closing of this cleft. Coenzyme binding typically precedes and contributes to substrate binding. In human ADH catalysis, the zinc ion helps coordinate the alcohol, followed by deprotonation of a histidine, the ribose of NAD, a serine, then the alcohol, which allows the transfer of a hydride to NAD+, creating NADH and a zinc-bound aldehyde or ketone. In yeast and some bacteria, the active site zinc binds an aldehyde, polarizing it, and leading to the reverse reaction.


Pssm-ID: 176216 [Multi-domain]  Cd Length: 338  Bit Score: 91.15  E-value: 3.04e-20
                        10        20        30        40        50        60        70        80
                ....*....|....*....|....*....|....*....|....*....|....*....|....*....|....*....|
gi 52783098  42 MRAVVLAGfGGLNKLRLFRKAMPEPQDGELKIRVKACGLNFIDLMVRQGNIDNPPKTPLVPGFECSGIVEALGDSVKGYE 121
Cdd:cd08254   1 MKAWRFHK-GSKGLLVLEEVPVPEPGPGEVLVKVKAAGVCHSDLHILDGGVPTLTKLPLTLGHEIAGTVVEVGAGVTNFK 79
                        90       100       110       120       130       140       150       160
                ....*....|....*....|....*....|....*....|....*....|....*....|....*....|....*....|
gi 52783098 122 IGDRV--------------------------MAFVNYN-AWAEVVCTPVEFVYKIPDDMSFSEAAAFPMNFVTAYVMLFE 174
Cdd:cd08254  80 VGDRVavpavipcgacalcrrgrgnlclnqgMPGLGIDgGFAEYIVVPARALVPVPDGVPFAQAAVATDAVLTPYHAVVR 159
                       170       180       190       200       210       220       230       240
                ....*....|....*....|....*....|....*....|....*....|....*....|....*....|....*....|
gi 52783098 175 VANLREGMSVLVHSAgGGVGQ---AVAQLC-STVpnvtvfgTASTFKHEAIKDSVTHlfdrNADYVQEVKRISA------ 244
Cdd:cd08254 160 AGEVKPGETVLVIGL-GGLGLnavQIAKAMgAAV-------IAVDIKEEKLELAKEL----GADEVLNSLDDSPkdkkaa 227
                       250       260       270       280       290       300       310       320
                ....*....|....*....|....*....|....*....|....*....|....*....|....*....|....*....|
gi 52783098 245 ---EGVDIVLDClCG--DNTGKGLSLLKPLGTYILYGSSNmvtgetksffsfakswwqvEKVNpiklyeenkviagFSLL 319
Cdd:cd08254 228 glgGGFDVIFDF-VGtqPTFEDAQKAVKPGGRIVVVGLGR-------------------DKLT-------------VDLS 274
                       330       340       350       360       370       380
                ....*....|....*....|....*....|....*....|....*....|....*....|....*..
gi 52783098 320 NLLFKQGRaglIRGV-------VEKLIGLYNQKKIKPVVDSLwALEEVKEAMQRIHDRGNIGKLILD 379
Cdd:cd08254 275 DLIARELR---IIGSfggtpedLPEVLDLIAKGKLDPQVETR-PLDEIPEVLERLHKGKVKGRVVLV 337
PRK10754 PRK10754
NADPH:quinone reductase;
51-283 1.21e-19

NADPH:quinone reductase;


Pssm-ID: 182701 [Multi-domain]  Cd Length: 327  Bit Score: 89.02  E-value: 1.21e-19
                         10        20        30        40        50        60        70        80
                 ....*....|....*....|....*....|....*....|....*....|....*....|....*....|....*....|
gi 52783098   51 GGLNKLRLFRKAMPEPQDGELKIRVKACGLNFIDLMVRQGnIDNPPKTPLVPGFECSGIVEALGDSVKGYEIGDRVM-AF 129
Cdd:PRK10754  11 GGPEVLQAVEFTPADPAENEVQVENKAIGINYIDTYIRSG-LYPPPSLPSGLGTEAAGVVSKVGSGVKHIKVGDRVVyAQ 89
                         90       100       110       120       130       140       150       160
                 ....*....|....*....|....*....|....*....|....*....|....*....|....*....|....*....|
gi 52783098  130 VNYNAWAEVVCTPVEFVYKIPDDMSFSEAAAFPMNFVTAYVMLFEVANLREGMSVLVHSAGGGVGQAVAQLCSTVpNVTV 209
Cdd:PRK10754  90 SALGAYSSVHNVPADKAAILPDAISFEQAAASFLKGLTVYYLLRKTYEIKPDEQFLFHAAAGGVGLIACQWAKAL-GAKL 168
                        170       180       190       200       210       220       230       240
                 ....*....|....*....|....*....|....*....|....*....|....*....|....*....|....*....|
gi 52783098  210 FGTA-STFKHEAIKDS-----VTHlfdRNADYVQEVKRISA-EGVDIVLDCLCGDNTGKGLSLLKPLGTYILYG-SSNMV 281
Cdd:PRK10754 169 IGTVgSAQKAQRAKKAgawqvINY---REENIVERVKEITGgKKVRVVYDSVGKDTWEASLDCLQRRGLMVSFGnASGPV 245

                 ..
gi 52783098  282 TG 283
Cdd:PRK10754 246 TG 247
Zn_ADH6 cd08260
Alcohol dehydrogenases of the MDR family; NAD(P)(H)-dependent oxidoreductases are the major ...
42-194 1.23e-19

Alcohol dehydrogenases of the MDR family; NAD(P)(H)-dependent oxidoreductases are the major enzymes in the interconversion of alcohols and aldehydes, or ketones. This group has the characteristic catalytic and structural zinc sites of the zinc-dependent alcohol dehydrogenases. Alcohol dehydrogenase in the liver converts ethanol and NAD+ to acetaldehyde and NADH, while in yeast and some other microorganisms ADH catalyzes the conversion acetaldehyde to ethanol in alcoholic fermentation. ADH is a member of the medium chain alcohol dehydrogenase family (MDR), which has a NAD(P)(H)-binding domain in a Rossmann fold of a beta-alpha form. The NAD(H)-binding region is comprised of 2 structurally similar halves, each of which contacts a mononucleotide. A GxGxxG motif after the first mononucleotide contact half allows the close contact of the coenzyme with the ADH backbone. The N-terminal catalytic domain has a distant homology to GroES. These proteins typically form dimers (typically higher plants, mammals) or tetramers (yeast, bacteria), and have 2 tightly bound zinc atoms per subunit, a catalytic zinc at the active site and a structural zinc in a lobe of the catalytic domain. NAD(H)-binding occurs in the cleft between the catalytic and coenzyme-binding domains at the active site, and coenzyme binding induces a conformational closing of this cleft. Coenzyme binding typically precedes and contributes to substrate binding. In human ADH catalysis, the zinc ion helps coordinate the alcohol, followed by deprotonation of a histidine, the ribose of NAD, a serine, then the alcohol, which allows the transfer of a hydride to NAD+, creating NADH and a zinc-bound aldehyde or ketone. In yeast and some bacteria, the active site zinc binds an aldehyde, polarizing it, and leading to the reverse reaction.


Pssm-ID: 176221 [Multi-domain]  Cd Length: 345  Bit Score: 89.20  E-value: 1.23e-19
                        10        20        30        40        50        60        70        80
                ....*....|....*....|....*....|....*....|....*....|....*....|....*....|....*....|
gi 52783098  42 MRAVVLAGFGGLnkLRLFRKAMPEPQDGELKIRVKACGLNFIDLMVRQGNiDNPPKTPLVPGFECSGIVEALGDSVKGYE 121
Cdd:cd08260   1 MRAAVYEEFGEP--LEIREVPDPEPPPDGVVVEVEACGVCRSDWHGWQGH-DPDVTLPHVPGHEFAGVVVEVGEDVSRWR 77
                        90       100       110       120       130       140       150       160
                ....*....|....*....|....*....|....*....|....*....|....*....|....*....|....*....|
gi 52783098 122 IGDRV---------------------------MAFVNYNAWAEVVCTP---VEFVyKIPDDMSFSEAAAFPMNFVTAYVM 171
Cdd:cd08260  78 VGDRVtvpfvlgcgtcpycragdsnvcehqvqPGFTHPGSFAEYVAVPradVNLV-RLPDDVDFVTAAGLGCRFATAFRA 156
                       170       180
                ....*....|....*....|...
gi 52783098 172 LFEVANLREGMSVLVHSAgGGVG 194
Cdd:cd08260 157 LVHQARVKPGEWVAVHGC-GGVG 178
Zn_ADH4 cd08258
Alcohol dehydrogenases of the MDR family; This group shares the zinc coordination sites of the ...
42-276 2.03e-19

Alcohol dehydrogenases of the MDR family; This group shares the zinc coordination sites of the zinc-dependent alcohol dehydrogenases. The medium chain dehydrogenases/reductase (MDR)/zinc-dependent alcohol dehydrogenase-like family, which contains the zinc-dependent alcohol dehydrogenase (ADH-Zn) and related proteins, is a diverse group of proteins related to the first identified member, class I mammalian ADH. MDRs display a broad range of activities and are distinguished from the smaller short chain dehydrogenases (~ 250 amino acids vs. the ~ 350 amino acids of the MDR). The MDR proteins have 2 domains: a C-terminal NAD(P)-binding Rossmann fold domain of an beta-alpha form and an N-terminal catalytic domain with distant homology to GroES. The MDR group contains a host of activities, including the founding alcohol dehydrogenase (ADH), quinone reductase, sorbitol dehydrogenase, formaldehyde dehydrogenase, butanediol DH, ketose reductase, cinnamyl reductase, and numerous others. The zinc-dependent alcohol dehydrogenases (ADHs) catalyze the NAD(P)(H)-dependent interconversion of alcohols to aldehydes or ketones. Active site zinc has a catalytic role, while structural zinc aids in stability. ADH-like proteins typically form dimers (typically higher plants, mammals) or tetramers (yeast, bacteria), and generally have 2 tightly bound zinc atoms per subunit. The active site zinc is coordinated by a histidine, two cysteines, and a water molecule. The second zinc seems to play a structural role, affects subunit interactions, and is typically coordinated by 4 cysteines.


Pssm-ID: 176219 [Multi-domain]  Cd Length: 306  Bit Score: 88.14  E-value: 2.03e-19
                        10        20        30        40        50        60        70        80
                ....*....|....*....|....*....|....*....|....*....|....*....|....*....|....*....|
gi 52783098  42 MRAVVL--AGFGGLnklRLFRKAMPEPQDGELKIRVKACGLNFIDLMVRQGNIDnPPKTPLVPGFECSGIVEALGDSVKG 119
Cdd:cd08258   1 MKALVKtgPGPGNV---ELREVPEPEPGPGEVLIKVAAAGICGSDLHIYKGDYD-PVETPVVLGHEFSGTIVEVGPDVEG 76
                        90       100       110       120       130       140       150       160
                ....*....|....*....|....*....|....*....|....*....|....*....|....*....|....*....|
gi 52783098 120 YEIGDRVMAFVN--------------YN--------------AWAEVVCTPVEFVYKIPDDMSFsEAAAFPMNFVTAYVM 171
Cdd:cd08258  77 WKVGDRVVSETTfstcgrcpycrrgdYNlcphrkgigtqadgGFAEYVLVPEESLHELPENLSL-EAAALTEPLAVAVHA 155
                       170       180       190       200       210       220       230       240
                ....*....|....*....|....*....|....*....|....*....|....*....|....*....|....*....|
gi 52783098 172 LFEVANLREGMSVLVhSAGGGVGQAVAQLC-STVPNVTVFGTASTfKHE---AIKDSVTHLFDRNADYVQEVKRIS-AEG 246
Cdd:cd08258 156 VAERSGIRPGDTVVV-FGPGPIGLLAAQVAkLQGATVVVVGTEKD-EVRldvAKELGADAVNGGEEDLAELVNEITdGDG 233
                       250       260       270
                ....*....|....*....|....*....|..
gi 52783098 247 VDIVLDClCGDNTG--KGLSLLKPLGTYILYG 276
Cdd:cd08258 234 ADVVIEC-SGAVPAleQALELLRKGGRIVQVG 264
Zn_ADH10 cd08263
Alcohol dehydrogenases of the MDR family; NAD(P)(H)-dependent oxidoreductases are the major ...
42-254 4.15e-19

Alcohol dehydrogenases of the MDR family; NAD(P)(H)-dependent oxidoreductases are the major enzymes in the interconversion of alcohols and aldehydes, or ketones. Alcohol dehydrogenase in the liver converts ethanol and NAD+ to acetaldehyde and NADH, while in yeast and some other microorganisms ADH catalyzes the conversion acetaldehyde to ethanol in alcoholic fermentation. ADH is a member of the medium chain alcohol dehydrogenase family (MDR), which have a NAD(P)(H)-binding domain in a Rossmann fold of a beta-alpha form. The NAD(H)-binding region is comprised of 2 structurally similar halves, each of which contacts a mononucleotide. A GxGxxG motif after the first mononucleotide contact half allows the close contact of the coenzyme with the ADH backbone. The N-terminal catalytic domain has a distant homology to GroES. These proteins typically form dimers (typically higher plants, mammals) or tetramers (yeast, bacteria), and have 2 tightly bound zinc atoms per subunit, a catalytic zinc at the active site and a structural zinc in a lobe of the catalytic domain. NAD(H)-binding occurs in the cleft between the catalytic and coenzyme-binding domains at the active site, and coenzyme binding induces a conformational closing of this cleft. Coenzyme binding typically precedes and contributes to substrate binding. In human ADH catalysis, the zinc ion helps coordinate the alcohol, followed by deprotonation of a histidine, the ribose of NAD, a serine, then the alcohol, which allows the transfer of a hydride to NAD+, creating NADH and a zinc-bound aldehyde or ketone. In yeast and some bacteria, the active site zinc binds an aldehyde, polarizing it, and leading to the reverse reaction.


Pssm-ID: 176224 [Multi-domain]  Cd Length: 367  Bit Score: 88.20  E-value: 4.15e-19
                        10        20        30        40        50        60        70        80
                ....*....|....*....|....*....|....*....|....*....|....*....|....*....|....*....|
gi 52783098  42 MRAVVLAGFGglNKLRLFRKAMPEPQDGELKIRVKACGLNFIDLMVRQGNIDNPPktPLVPGFECSGIVEALGDSVKGYE 121
Cdd:cd08263   1 MKAAVLKGPN--PPLTIEEIPVPRPKEGEILIRVAACGVCHSDLHVLKGELPFPP--PFVLGHEISGEVVEVGPNVENPY 76
                        90       100       110       120       130       140       150       160
                ....*....|....*....|....*....|....*....|....*....|....*....|....*....|....*....|
gi 52783098 122 ---IGDRVMA----------------------FVNYN---------------------------AWAEVVCTPVEFVYKI 149
Cdd:cd08263  77 glsVGDRVVGsfimpcgkcrycargkenlcedFFAYNrlkgtlydgttrlfrldggpvymysmgGLAEYAVVPATALAPL 156
                       170       180       190       200       210       220       230       240
                ....*....|....*....|....*....|....*....|....*....|....*....|....*....|....*....|
gi 52783098 150 PDDMSFSEAAAFPMNFVTAYVMLFEVANLREGMSVLVhSAGGGVGQAVAQLCStvpnvtVFGtASTFKHEAIKDSV---- 225
Cdd:cd08263 157 PESLDYTESAVLGCAGFTAYGALKHAADVRPGETVAV-IGVGGVGSSAIQLAK------AFG-ASPIIAVDVRDEKlaka 228
                       250       260       270
                ....*....|....*....|....*....|....*.
gi 52783098 226 -----THLFD-RNADYVQEVKRISA-EGVDIVLDCL 254
Cdd:cd08263 229 kelgaTHTVNaAKEDAVAAIREITGgRGVDVVVEAL 264
THR_DH_like cd08239
L-threonine dehydrogenase (TDH)-like; MDR/AHD-like proteins, including a protein annotated as ...
42-378 1.26e-18

L-threonine dehydrogenase (TDH)-like; MDR/AHD-like proteins, including a protein annotated as a threonine dehydrogenase. L-threonine dehydrogenase (TDH) catalyzes the zinc-dependent formation of 2-amino-3-ketobutyrate from L-threonine via NAD(H)-dependent oxidation. The zinc-dependent alcohol dehydrogenases (ADHs) catalyze the NAD(P)(H)-dependent interconversion of alcohols to aldehydes or ketones. Zinc-dependent ADHs are medium chain dehydrogenase/reductase type proteins (MDRs) and have a NAD(P)(H)-binding domain in a Rossmann fold of an beta-alpha form. The N-terminal region typically has an all-beta catalytic domain. In addition to alcohol dehydrogenases, this group includes quinone reductase, sorbitol dehydrogenase, formaldehyde dehydrogenase, butanediol DH, ketose reductase, cinnamyl reductase, and numerous others. These proteins typically form dimers (typically higher plants, mammals) or tetramers (yeast, bacteria), and generally have 2 tightly bound zinc atoms per subunit. The active site zinc is coordinated by a histidine, two cysteines, and a water molecule. The second zinc seems to play a structural role, affects subunit interactions, and is typically coordinated by 4 cysteines.


Pssm-ID: 176201 [Multi-domain]  Cd Length: 339  Bit Score: 86.22  E-value: 1.26e-18
                        10        20        30        40        50        60        70        80
                ....*....|....*....|....*....|....*....|....*....|....*....|....*....|....*....|
gi 52783098  42 MRAVVLAGFGglnKLRLFRKAMPEPQDGELKIRVKACGLNFIDLMVRQGNIDNPPKTPLVPGFECSGIVEALGDSVKGYE 121
Cdd:cd08239   1 MRGAVFPGDR---TVELREFPVPVPGPGEVLLRVKASGLCGSDLHYYYHGHRAPAYQGVIPGHEPAGVVVAVGPGVTHFR 77
                        90       100       110       120       130       140       150       160
                ....*....|....*....|....*....|....*....|....*....|....*....|....*....|....*....|
gi 52783098 122 IGDRVMAF-------------------------VNYNA---WAEVVCTPVEFVYKIPDDMSFSEAAAFPMNFVTAYVMLf 173
Cdd:cd08239  78 VGDRVMVYhyvgcgacrncrrgwmqlctskraaYGWNRdggHAEYMLVPEKTLIPLPDDLSFADGALLLCGIGTAYHAL- 156
                       170       180       190       200       210       220       230       240
                ....*....|....*....|....*....|....*....|....*....|....*....|....*....|....*....|
gi 52783098 174 EVANLREGMSVLVHSAgGGVGQAVAQLCSTVPNVTVFGT-ASTFKHE-AIKDSVTHLFDRNADYVQEVKRI-SAEGVDIV 250
Cdd:cd08239 157 RRVGVSGRDTVLVVGA-GPVGLGALMLARALGAEDVIGVdPSPERLElAKALGADFVINSGQDDVQEIRELtSGAGADVA 235
                       250       260       270       280       290       300       310       320
                ....*....|....*....|....*....|....*....|....*....|....*....|....*....|....*....|
gi 52783098 251 LDClCGDNTGKGLSL--LKPLGTYILYG-SSNMVTGETKSF----FSFAKSWwqvekVNPIKLYEENkviAGFsllnllf 323
Cdd:cd08239 236 IEC-SGNTAARRLALeaVRPWGRLVLVGeGGELTIEVSNDLirkqRTLIGSW-----YFSVPDMEEC---AEF------- 299
                       330       340       350       360       370
                ....*....|....*....|....*....|....*....|....*....|....*
gi 52783098 324 kqgraglirgVVEKLIglynqkKIKPVVDSLWALEEVKEAMQRIhDRGNIGKLIL 378
Cdd:cd08239 300 ----------LARHKL------EVDRLVTHRFGLDQAPEAYALF-AQGESGKVVF 337
sorbitol_DH cd05285
Sorbitol dehydrogenase; Sorbitol and aldose reductase are NAD(+) binding proteins of the ...
44-276 1.69e-18

Sorbitol dehydrogenase; Sorbitol and aldose reductase are NAD(+) binding proteins of the polyol pathway, which interconverts glucose and fructose. Sorbitol dehydrogenase is tetrameric and has a single catalytic zinc per subunit. Aldose reductase catalyzes the NADP(H)-dependent conversion of glucose to sorbital, and SDH uses NAD(H) in the conversion of sorbitol to fructose. NAD(P)(H)-dependent oxidoreductases are the major enzymes in the interconversion of alcohols and aldehydes, or ketones. The medium chain alcohol dehydrogenase family (MDR) have a NAD(P)(H)-binding domain in a Rossmann fold of a beta-alpha form. The N-terminal region typically has an all-beta catalytic domain. These proteins typically form dimers (typically higher plants, mammals) or tetramers (yeast, bacteria), and have 2 tightly bound zinc atoms per subunit.


Pssm-ID: 176188 [Multi-domain]  Cd Length: 343  Bit Score: 86.01  E-value: 1.69e-18
                        10        20        30        40        50        60        70        80
                ....*....|....*....|....*....|....*....|....*....|....*....|....*....|....*....|
gi 52783098  44 AVVLAGFGglnKLRLFRKAMPEPQDGELKIRVKACGL-----------NFIDLMVRQgnidnppktPLVPGFECSGIVEA 112
Cdd:cd05285   1 AAVLHGPG---DLRLEERPIPEPGPGEVLVRVRAVGIcgsdvhyykhgRIGDFVVKE---------PMVLGHESAGTVVA 68
                        90       100       110       120       130       140       150       160
                ....*....|....*....|....*....|....*....|....*....|....*....|....*....|....*....|
gi 52783098 113 LGDSVKGYEIGDRVM----------AFV---NYN---------------AWAEVVCTPVEFVYKIPDDMSFSEAAafpmn 164
Cdd:cd05285  69 VGSGVTHLKVGDRVAiepgvpcrtcEFCksgRYNlcpdmrfaatppvdgTLCRYVNHPADFCHKLPDNVSLEEGA----- 143
                       170       180       190       200       210       220       230       240
                ....*....|....*....|....*....|....*....|....*....|....*....|....*....|....*....|
gi 52783098 165 fvtayvmLFEV----------ANLREGMSVLVhsAGGG-VGQAVAQLCST--VPNVTV-------------FGTASTFkh 218
Cdd:cd05285 144 -------LVEPlsvgvhacrrAGVRPGDTVLV--FGAGpIGLLTAAVAKAfgATKVVVtdidpsrlefakeLGATHTV-- 212
                       250       260       270       280       290       300
                ....*....|....*....|....*....|....*....|....*....|....*....|....
gi 52783098 219 eaikDSVTHLFDRNADYVQEVkrISAEGVDIVLDClcgdnTGK------GLSLLKPLGTYILYG 276
Cdd:cd05285 213 ----NVRTEDTPESAEKIAEL--LGGKGPDVVIEC-----TGAesciqtAIYATRPGGTVVLVG 265
CAD_like cd08296
Cinnamyl alcohol dehydrogenases (CAD); Cinnamyl alcohol dehydrogenases (CAD), members of the ...
42-163 3.19e-18

Cinnamyl alcohol dehydrogenases (CAD); Cinnamyl alcohol dehydrogenases (CAD), members of the medium chain dehydrogenase/reductase family, reduce cinnamaldehydes to cinnamyl alcohols in the last step of monolignal metabolism in plant cells walls. CAD binds 2 zinc ions and is NADPH- dependent. CAD family members are also found in non-plant species, e.g. in yeast where they have an aldehyde reductase activity. The medium chain dehydrogenases/reductase (MDR)/zinc-dependent alcohol dehydrogenase-like family, which contains the zinc-dependent alcohol dehydrogenase (ADH-Zn) and related proteins, is a diverse group of proteins related to the first identified member, class I mammalian ADH. MDRs display a broad range of activities and are distinguished from the smaller short chain dehydrogenases (~ 250 amino acids vs. the ~ 350 amino acids of the MDR). The MDR proteins have 2 domains: a C-terminal NAD(P) binding-Rossmann fold domain of a beta-alpha form and an N-terminal catalytic domain with distant homology to GroES. The MDR group contains a host of activities, including the founding alcohol dehydrogenase (ADHs), quinone reductase, sorbitol dehydrogenase, formaldehyde dehydrogenase, butanediol DH, ketose reductase, cinnamyl reductase, and numerous others. The zinc-dependent alcohol dehydrogenases (ADHs) catalyze the NAD(P)(H)-dependent interconversion of alcohols to aldehydes or ketones. Active site zinc has a catalytic role, while structural zinc aids in stability. ADH-like proteins typically form dimers (typically higher plants, mammals) or tetramers (yeast, bacteria), and generally have 2 tightly bound zinc atoms per subunit. The active site zinc is coordinated by a histidine, two cysteines, and a water molecule. The second zinc seems to play a structural role, affects subunit interactions, and is typically coordinated by 4 cysteines.


Pssm-ID: 176256 [Multi-domain]  Cd Length: 333  Bit Score: 84.99  E-value: 3.19e-18
                        10        20        30        40        50        60        70        80
                ....*....|....*....|....*....|....*....|....*....|....*....|....*....|....*....|
gi 52783098  42 MRAVVLAGFGGlnKLRLFRKAMPEPQDGELKIRVKACGLNFIDLMVRQGNIDNPpKTPLVPGFECSGIVEALGDSVKGYE 121
Cdd:cd08296   1 YKAVQVTEPGG--PLELVERDVPLPGPGEVLIKVEACGVCHSDAFVKEGAMPGL-SYPRVPGHEVVGRIDAVGEGVSRWK 77
                        90       100       110       120       130       140       150
                ....*....|....*....|....*....|....*....|....*....|....*....|....*....|
gi 52783098 122 IGDRVMA-----------------FVN-----YNAW------AEVVCTPVEFVYKIPDDMSFSEAAafPM 163
Cdd:cd08296  78 VGDRVGVgwhgghcgtcdacrrgdFVHcengkVTGVtrdggyAEYMLAPAEALARIPDDLDAAEAA--PL 145
FrmA COG1062
Zn-dependent alcohol/formaldehyde dehydrogenase [Energy production and conversion];
64-373 4.56e-18

Zn-dependent alcohol/formaldehyde dehydrogenase [Energy production and conversion];


Pssm-ID: 440682 [Multi-domain]  Cd Length: 355  Bit Score: 84.75  E-value: 4.56e-18
                        10        20        30        40        50        60        70        80
                ....*....|....*....|....*....|....*....|....*....|....*....|....*....|....*....|
gi 52783098  64 PEPQDGELKIRVKACGLNFIDLMVRQGniDNPPKTPLVPGFECSGIVEALGDSVKGYEIGDRV----------------- 126
Cdd:COG1062  12 DEPRPGEVLVRIVAAGLCHSDLHVRDG--DLPVPLPAVLGHEGAGVVEEVGPGVTGVAPGDHVvlsfipscghcrycasg 89
                        90       100       110       120       130       140       150       160
                ....*....|....*....|....*....|....*....|....*....|....*....|....*....|....*....|
gi 52783098 127 -----MAFVNYN---------------------------AWAEVVCTPVEFVYKIPDDMSFSEAAAFPMNFVTAYVMLFE 174
Cdd:COG1062  90 rpalcEAGAALNgkgtlpdgtsrlssadgepvghffgqsSFAEYAVVPERSVVKVDKDVPLELAALLGCGVQTGAGAVLN 169
                       170       180       190       200       210       220       230       240
                ....*....|....*....|....*....|....*....|....*....|....*....|....*....|....*....|
gi 52783098 175 VANLREGMSVLVHSAgGGVGQAVAQL-----CSTVPNVTVfgtaSTFKHE-AIKDSVTHLFD-RNADYVQEVKRISAEGV 247
Cdd:COG1062 170 TAKVRPGDTVAVFGL-GGVGLSAVQGariagASRIIAVDP----VPEKLElARELGATHTVNpADEDAVEAVRELTGGGV 244
                       250       260       270       280       290       300       310       320
                ....*....|....*....|....*....|....*....|....*....|....*....|....*....|....*....|
gi 52783098 248 DIVLDClcgdnTGKG------LSLLKPLGTYILYGSSNMvtGETksffsfakswwqvekvnpiklyeenkviAGFSLLNL 321
Cdd:COG1062 245 DYAFET-----TGNPavirqaLEALRKGGTVVVVGLAPP--GAE----------------------------ISLDPFQL 289
                       330       340       350       360       370       380
                ....*....|....*....|....*....|....*....|....*....|....*....|....*.
gi 52783098 322 LFkQGRAglIRGVVE----------KLIGLYNQKKIKpvVDSL----WALEEVKEAMQRIHDRGNI 373
Cdd:COG1062 290 LL-TGRT--IRGSYFggavprrdipRLVDLYRAGRLP--LDELitrrYPLDEINEAFDDLRSGEVI 350
butanediol_DH_like cd08233
(2R,3R)-2,3-butanediol dehydrogenase; (2R,3R)-2,3-butanediol dehydrogenase, a zinc-dependent ...
42-253 1.74e-17

(2R,3R)-2,3-butanediol dehydrogenase; (2R,3R)-2,3-butanediol dehydrogenase, a zinc-dependent medium chain alcohol dehydrogenase, catalyzes the NAD(+)-dependent oxidation of (2R,3R)-2,3-butanediol and meso-butanediol to acetoin. BDH functions as a homodimer. NAD(P)(H)-dependent oxidoreductases are the major enzymes in the interconversion of alcohols and aldehydes, or ketones. The medium chain alcohol dehydrogenase family (MDR) have a NAD(P)(H)-binding domain in a Rossmann fold of a beta-alpha form. The N-terminal region typically has an all-beta catalytic domain. These proteins typically form dimers (typically higher plants, mammals) or tetramers (yeast, bacteria), and have 2 tightly bound zinc atoms per subunit. Sorbitol and aldose reductase are NAD(+) binding proteins of the polyol pathway, which interconverts glucose and fructose. Sorbitol dehydrogenase is tetrameric and has a single catalytic zinc per subunit.


Pssm-ID: 176195 [Multi-domain]  Cd Length: 351  Bit Score: 82.97  E-value: 1.74e-17
                        10        20        30        40        50        60        70        80
                ....*....|....*....|....*....|....*....|....*....|....*....|....*....|....*....|
gi 52783098  42 MRAVVlagFGGLNKLRLFRKAMPEPQDGELKIRVKACGLNFIDLM-VRQGNI----DNPP-----KTPLVPGFECSGIVE 111
Cdd:cd08233   1 MKAAR---YHGRKDIRVEEVPEPPVKPGEVKIKVAWCGICGSDLHeYLDGPIfiptEGHPhltgeTAPVTLGHEFSGVVV 77
                        90       100       110       120       130       140       150       160
                ....*....|....*....|....*....|....*....|....*....|....*....|....*....|....*....|
gi 52783098 112 ALGDSVKGYEIGDRV------------------------MAFVNYNAW----AEVVCTPVEFVYKIPDDMSFSEAAAF-P 162
Cdd:cd08233  78 EVGSGVTGFKVGDRVvveptikcgtcgackrglynlcdsLGFIGLGGGgggfAEYVVVPAYHVHKLPDNVPLEEAALVeP 157
                       170       180       190       200       210       220       230       240
                ....*....|....*....|....*....|....*....|....*....|....*....|....*....|....*....|
gi 52783098 163 MNfVTAYVMlfEVANLREGMSVLVhsAGGG-VGQAVAQL--CSTVPNVTVFGTASTFKHEAIKDSVTHLFD-RNADYVQE 238
Cdd:cd08233 158 LA-VAWHAV--RRSGFKPGDTALV--LGAGpIGLLTILAlkAAGASKIIVSEPSEARRELAEELGATIVLDpTEVDVVAE 232
                       250
                ....*....|....*.
gi 52783098 239 VKRISAE-GVDIVLDC 253
Cdd:cd08233 233 VRKLTGGgGVDVSFDC 248
CAD2 cd08298
Cinnamyl alcohol dehydrogenases (CAD); These alcohol dehydrogenases are related to the ...
42-159 2.11e-16

Cinnamyl alcohol dehydrogenases (CAD); These alcohol dehydrogenases are related to the cinnamyl alcohol dehydrogenases (CAD), members of the medium chain dehydrogenase/reductase family. NAD(P)(H)-dependent oxidoreductases are the major enzymes in the interconversion of alcohols and aldehydes, or ketones. Cinnamyl alcohol dehydrogenases (CAD) reduce cinnamaldehydes to cinnamyl alcohols in the last step of monolignal metabolism in plant cells walls. CAD binds 2 zinc ions and is NADPH- dependent. CAD family members are also found in non-plant species, e.g. in yeast where they have an aldehyde reductase activity. The medium chain dehydrogenases/reductase (MDR)/zinc-dependent alcohol dehydrogenase-like family, which contains the zinc-dependent alcohol dehydrogenase (ADH-Zn) and related proteins, is a diverse group of proteins related to the first identified member, class I mammalian ADH. MDRs display a broad range of activities and are distinguished from the smaller short chain dehydrogenases (~ 250 amino acids vs. the ~ 350 amino acids of the MDR). The MDR proteins have 2 domains: a C-terminal NAD(P) binding-Rossmann fold domain of a beta-alpha form and an N-terminal catalytic domain with distant homology to GroES. The MDR group contains a host of activities, including the founding alcohol dehydrogenase (ADH), quinone reductase, sorbitol dehydrogenase, formaldehyde dehydrogenase, butanediol DH, ketose reductase, cinnamyl reductase, and numerous others. The zinc-dependent alcohol dehydrogenases (ADHs) catalyze the NAD(P)(H)-dependent interconversion of alcohols to aldehydes or ketones. Active site zinc has a catalytic role, while structural zinc aids in stability. ADH-like proteins typically form dimers (typically higher plants, mammals) or tetramers (yeast, bacteria), and generally have 2 tightly bound zinc atoms per subunit. The active site zinc is coordinated by a histidine, two cysteines, and a water molecule. The second zinc seems to play a structural role, affects subunit interactions, and is typically coordinated by 4 cysteines.


Pssm-ID: 176258 [Multi-domain]  Cd Length: 329  Bit Score: 79.53  E-value: 2.11e-16
                        10        20        30        40        50        60        70        80
                ....*....|....*....|....*....|....*....|....*....|....*....|....*....|....*....|
gi 52783098  42 MRAVVLAGFGGL--NKLRLFRKAMPEPQDGELKIRVKACGLNFIDLMVRQGNIdNPPKTPLVPGFECSGIVEALGDSVKG 119
Cdd:cd08298   1 MKAMVLEKPGPIeeNPLRLTEVPVPEPGPGEVLIKVEACGVCRTDLHIVEGDL-PPPKLPLIPGHEIVGRVEAVGPGVTR 79
                        90       100       110       120       130       140
                ....*....|....*....|....*....|....*....|....*....|....*....|....*...
gi 52783098 120 YEIGDRV-------------------------MAFVNYNA---WAEVVCTPVEFVYKIPDDMSFSEAA 159
Cdd:cd08298  80 FSVGDRVgvpwlgstcgecrycrsgrenlcdnARFTGYTVdggYAEYMVADERFAYPIPEDYDDEEAA 147
Zn_ADH9 cd08269
Alcohol dehydrogenases of the MDR family; The medium chain dehydrogenases/reductase (MDR) ...
64-239 7.20e-16

Alcohol dehydrogenases of the MDR family; The medium chain dehydrogenases/reductase (MDR)/zinc-dependent alcohol dehydrogenase-like family, which contains the zinc-dependent alcohol dehydrogenase (ADH-Zn) and related proteins, is a diverse group of proteins related to the first identified member, class I mammalian ADH. MDRs display a broad range of activities and are distinguished from the smaller short chain dehydrogenases (~ 250 amino acids vs. the ~ 350 amino acids of the MDR). The MDR proteins have 2 domains: a C-terminal NAD(P)-binding Rossmann fold domain of a beta-alpha form and an N-terminal catalytic domain with distant homology to GroES. The MDR group contains a host of activities, including the founding alcohol dehydrogenase (ADH), quinone reductase, sorbitol dehydrogenase, formaldehyde dehydrogenase, butanediol DH, ketose reductase, cinnamyl reductase, and numerous others. The zinc-dependent alcohol dehydrogenases (ADHs) catalyze the NAD(P)(H)-dependent interconversion of alcohols to aldehydes or ketones. Active site zinc has a catalytic role, while structural zinc aids in stability.


Pssm-ID: 176230 [Multi-domain]  Cd Length: 312  Bit Score: 77.78  E-value: 7.20e-16
                        10        20        30        40        50        60        70        80
                ....*....|....*....|....*....|....*....|....*....|....*....|....*....|....*....|
gi 52783098  64 PEPQDGELKIRVKACGLNFIDL-MVRQGN-IDNPPKTPLVPGFECSGIVEALGDSVKGYEIGDRVmAFVNYNAWAEVVCT 141
Cdd:cd08269  15 PTPGPGQVLVRVEGCGVCGSDLpAFNQGRpWFVYPAEPGGPGHEGWGRVVALGPGVRGLAVGDRV-AGLSGGAFAEYDLA 93
                        90       100       110       120       130       140       150       160
                ....*....|....*....|....*....|....*....|....*....|....*....|....*....|....*....|
gi 52783098 142 PVEFVYKIPddmSFSEAAAFPMNFVTAYVMLFEVANLREGMSVLVHSAgGGVGQAVAQLCST--VPNVTV---------- 209
Cdd:cd08269  94 DADHAVPLP---SLLDGQAFPGEPLGCALNVFRRGWIRAGKTVAVIGA-GFIGLLFLQLAAAagARRVIAidrrparlal 169
                       170       180       190
                ....*....|....*....|....*....|....*.
gi 52783098 210 ---FGTASTF--KHEAIKDSVTHLFD-RNADYVQEV 239
Cdd:cd08269 170 areLGATEVVtdDSEAIVERVRELTGgAGADVVIEA 205
2-desacetyl-2-hydroxyethyl_bacteriochlorophyllide_ cd08255
2-desacetyl-2-hydroxyethyl bacteriochlorophyllide and other MDR family members; This subgroup ...
99-212 7.27e-16

2-desacetyl-2-hydroxyethyl bacteriochlorophyllide and other MDR family members; This subgroup of the medium chain dehydrogenases/reductase (MDR)/zinc-dependent alcohol dehydrogenase-like family has members identified as 2-desacetyl-2-hydroxyethyl bacteriochlorophyllide A dehydrogenase and alcohol dehydrogenases. The medium chain dehydrogenases/reductase (MDR)/zinc-dependent alcohol dehydrogenase-like family, which contains the zinc-dependent alcohol dehydrogenase (ADH-Zn) and related proteins, is a diverse group of proteins related to the first identified member, class I mammalian ADH. MDRs display a broad range of activities and are distinguished from the smaller short chain dehydrogenases (~ 250 amino acids vs. the ~ 350 amino acids of the MDR). The MDR proteins have 2 domains: a C-terminal NAD(P) binding-Rossmann fold domain of a beta-alpha form and an N-terminal catalytic domain with distant homology to GroES. The MDR group contains a host of activities, including the founding alcohol dehydrogenase (ADH), quinone reductase, sorbitol dehydrogenase, formaldehyde dehydrogenase, butanediol DH, ketose reductase, cinnamyl reductase, and numerous others. The zinc-dependent alcohol dehydrogenases (ADHs) catalyze the NAD(P)(H)-dependent interconversion of alcohols to aldehydes or ketones. Active site zinc has a catalytic role, while structural zinc aids in stability.


Pssm-ID: 176217 [Multi-domain]  Cd Length: 277  Bit Score: 77.31  E-value: 7.27e-16
                        10        20        30        40        50        60        70        80
                ....*....|....*....|....*....|....*....|....*....|....*....|....*....|....*....|
gi 52783098  99 PLVPGFECSGIVEALGDSVKGYEIGDRVmaFVNYNAwAEVVCTPVEFVYKIPDDMSFSEAAAFP-----MNFVTayvmlf 173
Cdd:cd08255  21 PLPPGYSSVGRVVEVGSGVTGFKPGDRV--FCFGPH-AERVVVPANLLVPLPDGLPPERAALTAlaataLNGVR------ 91
                        90       100       110       120
                ....*....|....*....|....*....|....*....|
gi 52783098 174 eVANLREGMSVLVhsAGGG-VGQAVAQLCSTVPNVTVFGT 212
Cdd:cd08255  92 -DAEPRLGERVAV--VGLGlVGLLAAQLAKAAGAREVVGV 128
CAD1 cd05283
Cinnamyl alcohol dehydrogenases (CAD); Cinnamyl alcohol dehydrogenases (CAD), members of the ...
48-369 2.70e-15

Cinnamyl alcohol dehydrogenases (CAD); Cinnamyl alcohol dehydrogenases (CAD), members of the medium chain dehydrogenase/reductase family, reduce cinnamaldehydes to cinnamyl alcohols in the last step of monolignal metabolism in plant cells walls. CAD binds 2 zinc ions and is NADPH- dependent. CAD family members are also found in non-plant species, e.g. in yeast where they have an aldehyde reductase activity. The medium chain dehydrogenases/reductase (MDR)/zinc-dependent alcohol dehydrogenase-like family, which contains the zinc-dependent alcohol dehydrogenase (ADH-Zn) and related proteins, is a diverse group of proteins related to the first identified member, class I mammalian ADH. MDRs display a broad range of activities and are distinguished from the smaller short chain dehydrogenases (~ 250 amino acids vs. the ~ 350 amino acids of the MDR). The MDR proteins have 2 domains: a C-terminal NAD(P) binding-Rossmann fold domain of a beta-alpha form and an N-terminal catalytic domain with distant homology to GroES. The MDR group contains a host of activities, including the founding alcohol dehydrogenase (ADH), quinone reductase, sorbitol dehydrogenase, formaldehyde dehydrogenase, butanediol DH, ketose reductase, cinnamyl reductase, and numerous others. The zinc-dependent alcohol dehydrogenases (ADHs) catalyze the NAD(P)(H)-dependent interconversion of alcohols to aldehydes or ketones. Active site zinc has a catalytic role, while structural zinc aids in stability. ADH-like proteins typically form dimers (typically higher plants, mammals) or tetramers (yeast, bacteria), and generally have 2 tightly bound zinc atoms per subunit. The active site zinc is coordinated by a histidine, two cysteines, and a water molecule. The second zinc seems to play a structural role, affects subunit interactions, and is typically coordinated by 4 cysteines.


Pssm-ID: 176186 [Multi-domain]  Cd Length: 337  Bit Score: 76.38  E-value: 2.70e-15
                        10        20        30        40        50        60        70        80
                ....*....|....*....|....*....|....*....|....*....|....*....|....*....|....*....|
gi 52783098  48 AGFGGLNKLRLFRKAMPEPQDGELKIRVKACGLNFIDL-MVRQGNidNPPKTPLVPGFECSGIVEALGDSVKGYEIGDRV 126
Cdd:cd05283   4 AARDASGKLEPFTFERRPLGPDDVDIKITYCGVCHSDLhTLRNEW--GPTKYPLVPGHEIVGIVVAVGSKVTKFKVGDRV 81
                        90       100       110       120       130       140       150       160
                ....*....|....*....|....*....|....*....|....*....|....*....|....*....|....*....|
gi 52783098 127 -------------------------MAFVNYNAW----------AEVVCTPVEFVYKIPDDMSfSEAAAfPMNF--VTAY 169
Cdd:cd05283  82 gvgcqvdscgtceqcksgeeqycpkGVVTYNGKYpdgtitqggyADHIVVDERFVFKIPEGLD-SAAAA-PLLCagITVY 159
                       170       180       190       200       210       220       230       240
                ....*....|....*....|....*....|....*....|....*....|....*....|....*....|....*....|
gi 52783098 170 VMLFEvANLREGMSVLVhsAG-GGVGQ-----AVAQLCstvpNVTVFGTASTFKHEAIKDSVTHLFD-RNADYVQEVKRi 242
Cdd:cd05283 160 SPLKR-NGVGPGKRVGV--VGiGGLGHlavkfAKALGA----EVTAFSRSPSKKEDALKLGADEFIAtKDPEAMKKAAG- 231
                       250       260       270       280       290       300       310       320
                ....*....|....*....|....*....|....*....|....*....|....*....|....*....|....*....|
gi 52783098 243 saeGVDIVLDCLCGD-NTGKGLSLLKPLGTYILYGssnmVTGETKSFFSFakswwqvekvnpiklyeenkviagfsllNL 321
Cdd:cd05283 232 ---SLDLIIDTVSAShDLDPYLSLLKPGGTLVLVG----APEEPLPVPPF----------------------------PL 276
                       330       340       350       360       370
                ....*....|....*....|....*....|....*....|....*....|..
gi 52783098 322 LFKQGR--AGLIRGVVE--KLIGLYNQKKIKPVVDsLWALEEVKEAMQRIHD 369
Cdd:cd05283 277 IFGRKSvaGSLIGGRKEtqEMLDFAAEHGIKPWVE-VIPMDGINEALERLEK 327
ADH_N pfam08240
Alcohol dehydrogenase GroES-like domain; This is the catalytic domain of alcohol ...
69-166 4.49e-15

Alcohol dehydrogenase GroES-like domain; This is the catalytic domain of alcohol dehydrogenases. Many of them contain an inserted zinc binding domain. This domain has a GroES-like structure.


Pssm-ID: 400513 [Multi-domain]  Cd Length: 106  Bit Score: 70.72  E-value: 4.49e-15
                          10        20        30        40        50        60        70        80
                  ....*....|....*....|....*....|....*....|....*....|....*....|....*....|....*....|
gi 52783098    69 GELKIRVKACGLNFIDLMVRQGNIdNPPKTPLVPGFECSGIVEALGDSVKGYEIGDRVMAFVNYN-----AW---AEVVC 140
Cdd:pfam08240   1 GEVLVKVKAAGICGSDLHIYKGGN-PPVKLPLILGHEFAGEVVEVGPGVTGLKVGDRVVVEPLIPcgkceYCregRYNLC 79
                          90       100
                  ....*....|....*....|....*.
gi 52783098   141 TPVEFVYkIPDDMSFSEAAAFPMNFV 166
Cdd:pfam08240  80 PNGRFLG-YDRDGGFAEYVVVPERNL 104
liver_ADH_like1 cd08281
Zinc-dependent alcohol dehydrogenases (ADH) and class III ADG (AKA formaldehyde dehydrogenase); ...
42-253 4.59e-15

Zinc-dependent alcohol dehydrogenases (ADH) and class III ADG (AKA formaldehyde dehydrogenase); NAD(P)(H)-dependent oxidoreductases are the major enzymes in the interconversion of alcohols and aldehydes or ketones. This group contains members identified as zinc dependent alcohol dehydrogenases (ADH), and class III ADG (aka formaldehyde dehydrogenase, FDH). Alcohol dehydrogenase in the liver converts ethanol and NAD+ to acetaldehyde and NADH, while in yeast and some other microorganisms ADH catalyzes the conversion acetaldehyde to ethanol in alcoholic fermentation. NAD(P)(H)-dependent oxidoreductases are the major enzymes in the interconversion of alcohols and aldehydes or ketones. Alcohol dehydrogenase in the liver converts ethanol and NAD+ to acetaldehyde and NADH, while in yeast and some other microorganisms ADH catalyzes the conversion acetaldehyde to ethanol in alcoholic fermentation. Class III ADH are also know as glutathione-dependent formaldehyde dehydrogenase (FDH), which convert aldehydes to the corresponding carboxylic acid and alcohol. ADH is a member of the medium chain alcohol dehydrogenase family (MDR), which have a NAD(P)(H)-binding domain in a Rossmann fold of a beta-alpha form. The NAD(H)-binding region is comprised of 2 structurally similar halves, each of which contacts a mononucleotide. A GxGxxG motif after the first mononucleotide contact half allows the close contact of the coenzyme with the ADH backbone. The N-terminal catalytic domain has a distant homology to GroES. These proteins typically form dimers (typically higher plants, mammals) or tetramers (yeast, bacteria), and have 2 tightly bound zinc atoms per subunit, a catalytic zinc at the active site and a structural zinc in a lobe of the catalytic domain. NAD(H) binding occurs in the cleft between the catalytic and coenzyme-binding domains at the active site, and coenzyme binding induces a conformational closing of this cleft. Coenzyme binding typically precedes and contributes to substrate binding. In human ADH catalysis, the zinc ion helps coordinate the alcohol, followed by deprotonation of a histidine, the ribose of NAD, a serine, then the alcohol, which allows the transfer of a hydride to NAD+, creating NADH and a zinc-bound aldehyde or ketone. In yeast and some bacteria, the active site zinc binds an aldehyde, polarizing it, and leading to the reverse reaction.


Pssm-ID: 176241 [Multi-domain]  Cd Length: 371  Bit Score: 76.26  E-value: 4.59e-15
                        10        20        30        40        50        60        70        80
                ....*....|....*....|....*....|....*....|....*....|....*....|....*....|....*....|
gi 52783098  42 MRAVVL------AGFGGLNKLRLFRKAMPEPQDGELKIRVKACGLNFIDLMVRQGniDNPPKTPLVPGFECSGIVEALGD 115
Cdd:cd08281   1 MRAAVLretgapTPYADSRPLVIEEVELDPPGPGEVLVKIAAAGLCHSDLSVING--DRPRPLPMALGHEAAGVVVEVGE 78
                        90       100       110       120       130       140       150       160
                ....*....|....*....|....*....|....*....|....*....|....*....|....*....|....*....|
gi 52783098 116 SVKGYEIGDR-VMAFV-------------------------------------------NY----NAWAEVVCTPVEFVY 147
Cdd:cd08281  79 GVTDLEVGDHvVLVFVpscghcrpcaegrpalcepgaaangagtllsggrrlrlrggeiNHhlgvSAFAEYAVVSRRSVV 158
                       170       180       190       200       210       220       230       240
                ....*....|....*....|....*....|....*....|....*....|....*....|....*....|....*....|
gi 52783098 148 KIPDDMSFSEAAAFPMNFVTAYVMLFEVANLREGMSVLVhsAG-GGVG-----QAVAQLCSTVPNVTVFGTastfKHEAI 221
Cdd:cd08281 159 KIDKDVPLEIAALFGCAVLTGVGAVVNTAGVRPGQSVAV--VGlGGVGlsallGAVAAGASQVVAVDLNED----KLALA 232
                       250       260       270
                ....*....|....*....|....*....|....
gi 52783098 222 KD-SVTHLFD-RNADYVQEVKRISAEGVDIVLDC 253
Cdd:cd08281 233 RElGATATVNaGDPNAVEQVRELTGGGVDYAFEM 266
6_hydroxyhexanoate_dh_like cd08240
6-hydroxyhexanoate dehydrogenase; 6-hydroxyhexanoate dehydrogenase, an enzyme of the ...
42-378 5.92e-15

6-hydroxyhexanoate dehydrogenase; 6-hydroxyhexanoate dehydrogenase, an enzyme of the zinc-dependent alcohol dehydrogenase-like family of medium chain dehydrogenases/reductases catalyzes the conversion of 6-hydroxyhexanoate and NAD(+) to 6-oxohexanoate + NADH and H+. NAD(P)(H)-dependent oxidoreductases are the major enzymes in the interconversion of alcohols and aldehydes, or ketones. Alcohol dehydrogenase in the liver converts ethanol and NAD+ to acetaldehyde and NADH, while in yeast and some other microorganisms ADH catalyzes the conversion acetaldehyde to ethanol in alcoholic fermentation. ADH is a member of the medium chain alcohol dehydrogenase family (MDR), which has a NAD(P)(H)-binding domain in a Rossmann fold of a beta-alpha form. The NAD(H)-binding region is comprised of 2 structurally similar halves, each of which contacts a mononucleotide. A GxGxxG motif after the first mononucleotide contact half allows the close contact of the coenzyme with the ADH backbone. The N-terminal catalytic domain has a distant homology to GroES. These proteins typically form dimers (typically higher plants, mammals) or tetramers (yeast, bacteria), and have 2 tightly bound zinc atoms per subunit, a catalytic zinc at the active site and a structural zinc in a lobe of the catalytic domain. NAD(H)-binding occurs in the cleft between the catalytic and coenzyme-binding domains, at the active site, and coenzyme binding induces a conformational closing of this cleft. Coenzyme binding typically precedes and contributes to substrate binding. In human ADH catalysis, the zinc ion helps coordinate the alcohol, followed by deprotonation of a histidine, the ribose of NAD, a serine, then the alcohol, which allows the transfer of a hydride to NAD+, creating NADH and a zinc-bound aldehyde or ketone. In yeast and some bacteria, the active site zinc binds an aldehyde, polarizing it, and leading to the reverse reaction.


Pssm-ID: 176202 [Multi-domain]  Cd Length: 350  Bit Score: 75.73  E-value: 5.92e-15
                        10        20        30        40        50        60        70        80
                ....*....|....*....|....*....|....*....|....*....|....*....|....*....|....*....|
gi 52783098  42 MRAVVLAGFGglNKLRLFRKAMPEPQDGELKIRVKACGLNFIDLMVRQGNID----------NP-PKTPLVPGFECSGIV 110
Cdd:cd08240   1 MKAAAVVEPG--KPLEEVEIDTPKPPGTEVLVKVTACGVCHSDLHIWDGGYDlgggktmsldDRgVKLPLVLGHEIVGEV 78
                        90       100       110       120       130       140       150       160
                ....*....|....*....|....*....|....*....|....*....|....*....|....*....|....*....|
gi 52783098 111 EALGDSVKGYEIGDRVMAF---------------------------VNYNAWAEVVCTPVEFVYKIPDDMSFSEAAAFPM 163
Cdd:cd08240  79 VAVGPDAADVKVGDKVLVYpwigcgecpvclagdenlcakgralgiFQDGGYAEYVIVPHSRYLVDPGGLDPALAATLAC 158
                       170       180       190       200       210       220       230       240
                ....*....|....*....|....*....|....*....|....*....|....*....|....*....|....*....|
gi 52783098 164 NFVTAYVMLFEVANLREGMSVLVHSAgGGVG-QAVAQLCSTVPNVTVFGTASTFKHEAIKDSVTH--LFDRNADYVQEVK 240
Cdd:cd08240 159 SGLTAYSAVKKLMPLVADEPVVIIGA-GGLGlMALALLKALGPANIIVVDIDEAKLEAAKAAGADvvVNGSDPDAAKRII 237
                       250       260       270       280       290       300       310       320
                ....*....|....*....|....*....|....*....|....*....|....*....|....*....|....*....|
gi 52783098 241 RISAEGVDIVLDCL-CGDNTGKGLSLLKPLGTYILYGssnMVTGEtksfFSFAkswwqvekvnpiklyeenkvIAGFSLl 319
Cdd:cd08240 238 KAAGGGVDAVIDFVnNSATASLAFDILAKGGKLVLVG---LFGGE----ATLP--------------------LPLLPL- 289
                       330       340       350       360       370       380
                ....*....|....*....|....*....|....*....|....*....|....*....|....*.
gi 52783098 320 nllfkqgRAGLIRGV-------VEKLIGLYNQKKIKPVVDSLWALEEVKEAMQRIHDRGNIGKLIL 378
Cdd:cd08240 290 -------RALTIQGSyvgsleeLRELVALAKAGKLKPIPLTERPLSDVNDALDDLKAGKVVGRAVL 348
MDR_like cd08242
Medium chain dehydrogenases/reductase (MDR)/zinc-dependent alcohol dehydrogenase-like family; ...
42-274 9.57e-15

Medium chain dehydrogenases/reductase (MDR)/zinc-dependent alcohol dehydrogenase-like family; This group contains members identified as related to zinc-dependent alcohol dehydrogenase and other members of the MDR family, including threonine dehydrogenase. The medium chain dehydrogenases/reductase (MDR)/zinc-dependent alcohol dehydrogenase-like family, which contains the zinc-dependent alcohol dehydrogenase (ADH-Zn) and related proteins, is a diverse group of proteins related to the first identified member, class I mammalian ADH. MDRs display a broad range of activities and are distinguished from the smaller short chain dehydrogenases (~ 250 amino acids vs. the ~ 350 amino acids of the MDR). The MDR proteins have 2 domains: a C-terminal NAD(P) binding-Rossmann fold domain of a beta-alpha form and an N-terminal catalytic domain with distant homology to GroES. The MDR group includes various activities, including the founding alcohol dehydrogenase (ADH), quinone reductase, sorbitol dehydrogenase, formaldehyde dehydrogenase, butanediol DH, ketose reductase, cinnamyl reductase, and numerous others. The zinc-dependent alcohol dehydrogenases (ADHs) catalyze the NAD(P)(H)-dependent interconversion of alcohols to aldehydes or ketones. Active site zinc has a catalytic role, while structural zinc aids in stability. ADH-like proteins typically form dimers (typically higher plants, mammals) or tetramers (yeast, bacteria), and generally have 2 tightly bound zinc atoms per subunit. The active site zinc is coordinated by a histidine, two cysteines, and a water molecule. The second zinc seems to play a structural role, affects subunit interactions, and is typically coordinated by 4 cysteines.


Pssm-ID: 176204 [Multi-domain]  Cd Length: 319  Bit Score: 74.59  E-value: 9.57e-15
                        10        20        30        40        50        60        70        80
                ....*....|....*....|....*....|....*....|....*....|....*....|....*....|....*....|
gi 52783098  42 MRAVVLAGfgglNKLRLFRK-AMPEPQDGELKIRVKACGLNFIDLMVRQGNIdnppKTPLVPGFECSGIVEALGDS---- 116
Cdd:cd08242   1 MKALVLDG----GLDLRVEDlPKPEPPPGEALVRVLLAGICNTDLEIYKGYY----PFPGVPGHEFVGIVEEGPEAelvg 72
                        90       100       110       120       130       140       150       160
                ....*....|....*....|....*....|....*....|....*....|....*....|....*....|....*....|
gi 52783098 117 --VKGyEI------------GDR-------VMAFVNYN-AWAEVVCTPVEFVYKIPDDMSfSEAAAF--PMnfvTAYVML 172
Cdd:cd08242  73 krVVG-EIniacgrceycrrGLYthcpnrtVLGIVDRDgAFAEYLTLPLENLHVVPDLVP-DEQAVFaePL---AAALEI 147
                       170       180       190       200       210       220       230       240
                ....*....|....*....|....*....|....*....|....*....|....*....|....*....|....*....|
gi 52783098 173 FEVANLREGMSVLVHSAgGGVGQAVAQ-LCSTVPNVTVFGtastfKHEaikDSVTHLFDRNADYVQEVKRISAEGV-DIV 250
Cdd:cd08242 148 LEQVPITPGDKVAVLGD-GKLGLLIAQvLALTGPDVVLVG-----RHS---EKLALARRLGVETVLPDEAESEGGGfDVV 218
                       250       260
                ....*....|....*....|....*.
gi 52783098 251 LDClCGDNTG--KGLSLLKPLGTYIL 274
Cdd:cd08242 219 VEA-TGSPSGleLALRLVRPRGTVVL 243
Zn_ADH_class_III cd08279
Class III alcohol dehydrogenase; Glutathione-dependent formaldehyde dehydrogenases (FDHs, ...
42-373 2.55e-14

Class III alcohol dehydrogenase; Glutathione-dependent formaldehyde dehydrogenases (FDHs, Class III ADH) are members of the zinc-dependent/medium chain alcohol dehydrogenase family. FDH converts formaldehyde and NAD(P) to formate and NAD(P)H. The initial step in this process the spontaneous formation of a S-(hydroxymethyl)glutathione adduct from formaldehyde and glutathione, followed by FDH-mediated oxidation (and detoxification) of the adduct to S-formylglutathione. NAD(P)(H)-dependent oxidoreductases are the major enzymes in the interconversion of alcohols and aldehydes or ketones. Alcohol dehydrogenase in the liver converts ethanol and NAD+ to acetaldehyde and NADH, while in yeast and some other microorganisms ADH catalyzes the conversion acetaldehyde to ethanol in alcoholic fermentation. Class III ADH are also known as glutathione-dependent formaldehyde dehydrogenase (FDH), which convert aldehydes to corresponding carboxylic acid and alcohol. ADH is a member of the medium chain alcohol dehydrogenase family (MDR), which has a NAD(P)(H)-binding domain in a Rossmann fold of an beta-alpha form. The NAD(H)-binding region is comprised of 2 structurally similar halves, each of which contacts a mononucleotide. A GxGxxG motif after the first mononucleotide contact half allows the close contact of the coenzyme with the ADH backbone. The N-terminal catalytic domain has a distant homology to GroES. These proteins typically form dimers (typically higher plants, mammals) or tetramers (yeast, bacteria), and have 2 tightly bound zinc atoms per subunit, a catalytic zinc at the active site and a structural zinc in a lobe of the catalytic domain. NAD(H) binding occurs in the cleft between the catalytic and coenzyme-binding domains at the active site, and coenzyme binding induces a conformational closing of this cleft. Coenzyme binding typically precedes and contributes to substrate binding.


Pssm-ID: 176240 [Multi-domain]  Cd Length: 363  Bit Score: 73.73  E-value: 2.55e-14
                        10        20        30        40        50        60        70        80
                ....*....|....*....|....*....|....*....|....*....|....*....|....*....|....*....|
gi 52783098  42 MRAVVLAGFGGlnKLRLFRKAMPEPQDGELKIRVKACGLNFIDLMVRQGniDNPPKTPLVPGFECSGIVEALGDSVKGYE 121
Cdd:cd08279   1 MRAAVLHEVGK--PLEIEEVELDDPGPGEVLVRIAAAGLCHSDLHVVTG--DLPAPLPAVLGHEGAGVVEEVGPGVTGVK 76
                        90       100       110       120       130       140       150       160
                ....*....|....*....|....*....|....*....|....*....|....*....|....*....|....*....|
gi 52783098 122 IGDRVM-----------------------------------------------AFVNYNAWAEVVCTPVEFVYKIPDDMS 154
Cdd:cd08279  77 PGDHVVlswipacgtcrycsrgqpnlcdlgagilggqlpdgtrrftadgepvgAMCGLGTFAEYTVVPEASVVKIDDDIP 156
                       170       180       190       200       210       220       230       240
                ....*....|....*....|....*....|....*....|....*....|....*....|....*....|....*....|
gi 52783098 155 FSEAAAFPMNFVTAYVMLFEVANLREGMSVLVHSAgGGVGQAVAQ---LC--STVPNVTVfgtaSTFKHEAIKDS-VTHL 228
Cdd:cd08279 157 LDRAALLGCGVTTGVGAVVNTARVRPGDTVAVIGC-GGVGLNAIQgarIAgaSRIIAVDP----VPEKLELARRFgATHT 231
                       250       260       270       280       290       300       310       320
                ....*....|....*....|....*....|....*....|....*....|....*....|....*....|....*....|
gi 52783098 229 FD-RNADYVQEVKRISA-EGVDIVLDCL-CGDNTGKGLSLLKPLGTYILYG---SSNMVTGETKSFFSFAKswwqvekvn 302
Cdd:cd08279 232 VNaSEDDAVEAVRDLTDgRGADYAFEAVgRAATIRQALAMTRKGGTAVVVGmgpPGETVSLPALELFLSEK--------- 302
                       330       340       350       360       370       380       390
                ....*....|....*....|....*....|....*....|....*....|....*....|....*....|....*
gi 52783098 303 piklyeenkviagfSLLNLLFKQGRaglIRGVVEKLIGLYNQKKIKpvVDSL----WALEEVKEAMQRIHDRGNI 373
Cdd:cd08279 303 --------------RLQGSLYGSAN---PRRDIPRLLDLYRAGRLK--LDELvtrrYSLDEINEAFADMLAGENA 358
MDR_yhdh_yhfp cd05280
Yhdh and yhfp-like putative quinone oxidoreductases; Yhdh and yhfp-like putative quinone ...
42-270 5.98e-14

Yhdh and yhfp-like putative quinone oxidoreductases; Yhdh and yhfp-like putative quinone oxidoreductases (QOR). QOR catalyzes the conversion of a quinone + NAD(P)H to a hydroquinone + NAD(P)+. Quinones are cyclic diones derived from aromatic compounds. Membrane bound QOR actin the respiratory chains of bacteria and mitochondria, while soluble QOR acts to protect from toxic quinones (e.g. DT-diaphorase) or as a soluble eye-lens protein in some vertebrates (e.g. zeta-crystalin). QOR reduces quinones through a semi-quinone intermediate via a NAD(P)H-dependent single electron transfer. QOR is a member of the medium chain dehydrogenase/reductase family, but lacks the zinc-binding sites of the prototypical alcohol dehydrogenases of this group. NAD(P)(H)-dependent oxidoreductases are the major enzymes in the interconversion of alcohols and aldehydes, or ketones. Alcohol dehydrogenase in the liver converts ethanol and NAD+ to acetaldehyde and NADH, while in yeast and some other microorganisms ADH catalyzes the conversion acetaldehyde to ethanol in alcoholic fermentation. ADH is a member of the medium chain alcohol dehydrogenase family (MDR), which has a NAD(P)(H)-binding domain in a Rossmann fold of a beta-alpha form. The NAD(H)-binding region is comprised of 2 structurally similar halves, each of which contacts a mononucleotide. A GxGxxG motif after the first mononucleotide contact half allows the close contact of the coenzyme with the ADH backbone. The N-terminal catalytic domain has a distant homology to GroES. These proteins typically form dimers (typically higher plants, mammals) or tetramers (yeast, bacteria), and have 2 tightly bound zinc atoms per subunit, a catalytic zinc at the active site and a structural zinc in a lobe of the catalytic domain. NAD(H) binding occurs in the cleft between the catalytic and coenzyme-binding domains at the active site, and coenzyme binding induces a conformational closing of this cleft. Coenzyme binding typically precedes and contributes to substrate binding. In human ADH catalysis, the zinc ion helps coordinate the alcohol, followed by deprotonation of a histidine, the ribose of NAD, a serine, then the alcohol, which allows the transfer of a hydride to NAD+, creating NADH and a zinc-bound aldehyde or ketone. In yeast and some bacteria, the active site zinc binds an aldehyde, polarizing it, and leading to the reverse reaction.


Pssm-ID: 176183 [Multi-domain]  Cd Length: 325  Bit Score: 72.19  E-value: 5.98e-14
                        10        20        30        40        50        60        70        80
                ....*....|....*....|....*....|....*....|....*....|....*....|....*....|....*....|
gi 52783098  42 MRAVVLAGFGGLNKLRLFRKAMPEPQDGELKIRVKACGLNFIDLMVRQGNIDNPPKTPLVPGFECSGIVEAlgDSVKGYE 121
Cdd:cd05280   1 FKALVVEEQDGGVSLFLRTLPLDDLPEGDVLIRVHYSSLNYKDALAATGNGGVTRNYPHTPGIDAAGTVVS--SDDPRFR 78
                        90       100       110       120       130       140       150       160
                ....*....|....*....|....*....|....*....|....*....|....*....|....*....|....*....|
gi 52783098 122 IGDRVMAF-----VNYN-AWAEVVCTPVEFVYKIPDDMSFSEAAAFPMNFVTAYVMLFEVanLREGMS-----VLVHSAG 190
Cdd:cd05280  79 EGDEVLVTgydlgMNTDgGFAEYVRVPADWVVPLPEGLSLREAMILGTAGFTAALSVHRL--EDNGQTpedgpVLVTGAT 156
                       170       180       190       200       210       220       230       240
                ....*....|....*....|....*....|....*....|....*....|....*....|....*....|....*....|
gi 52783098 191 GGVGQ-AVAQLCSTVPNVTVFgTASTFKHEAIKD-SVTHLFDRNADYVQEVKRISAEGVDIVLDCLCGDNTGKGLSLLKP 268
Cdd:cd05280 157 GGVGSiAVAILAKLGYTVVAL-TGKEEQADYLKSlGASEVLDREDLLDESKKPLLKARWAGAIDTVGGDVLANLLKQTKY 235

                ..
gi 52783098 269 LG 270
Cdd:cd05280 236 GG 237
Zn_ADH1 cd05279
Liver alcohol dehydrogenase and related zinc-dependent alcohol dehydrogenases; NAD(P)(H) ...
66-378 6.20e-14

Liver alcohol dehydrogenase and related zinc-dependent alcohol dehydrogenases; NAD(P)(H)-dependent oxidoreductases are the major enzymes in the interconversion of alcohols and aldehydes, or ketones. Alcohol dehydrogenase in the liver converts ethanol and NAD+ to acetaldehyde and NADH, while in yeast and some other microorganisms ADH catalyzes the conversion acetaldehyde to ethanol in alcoholic fermentation. There are 7 vertebrate ADH 7 classes, 6 of which have been identified in humans. Class III, glutathione-dependent formaldehyde dehydrogenase, has been identified as the primordial form and exists in diverse species, including plants, micro-organisms, vertebrates, and invertebrates. Class I, typified by liver dehydrogenase, is an evolving form. Gene duplication and functional specialization of ADH into ADH classes and subclasses created numerous forms in vertebrates. For example, the A, B and C (formerly alpha, beta, gamma) human class I subunits have high overall structural similarity, but differ in the substrate binding pocket and therefore in substrate specificity. In human ADH catalysis, the zinc ion helps coordinate the alcohol, followed by deprotonation of a histidine (His-51), the ribose of NAD, a serine (Ser-48), then the alcohol, which allows the transfer of a hydride to NAD+, creating NADH and a zinc-bound aldehyde or ketone. In yeast and some bacteria, the active site zinc binds an aldehyde, polarizing it, and leading to the reverse reaction. ADH is a member of the medium chain alcohol dehydrogenase family (MDR), which has a NAD(P)(H)-binding domain in a Rossmann fold of an beta-alpha form. The NAD(H)-binding region is comprised of 2 structurally similar halves, each of which contacts a mononucleotide. A GxGxxG motif after the first mononucleotide contact half allows the close contact of the coenzyme with the ADH backbone. The N-terminal catalytic domain has a distant homology to GroES. These proteins typically form dimers (typically higher plants, mammals) or tetramers (yeast, bacteria), and have 2 tightly bound zinc atoms per subunit, a catalytic zinc at the active site and a structural zinc in a lobe of the catalytic domain. NAD(H) binding occurs in the cleft between the catalytic and coenzyme-binding domains at the active site, and coenzyme binding induces a conformational closing of this cleft. Coenzyme binding typically precedes and contributes to substrate binding.


Pssm-ID: 176182 [Multi-domain]  Cd Length: 365  Bit Score: 72.47  E-value: 6.20e-14
                        10        20        30        40        50        60        70        80
                ....*....|....*....|....*....|....*....|....*....|....*....|....*....|....*....|
gi 52783098  66 PQDGELKIRVKACGLNFIDLMVRQGniDNPPKTPLVPGFECSGIVEALGDSVKGYEIGDRVMA----------------- 128
Cdd:cd05279  23 PKAGEVRIKVVATGVCHTDLHVIDG--KLPTPLPVILGHEGAGIVESIGPGVTTLKPGDKVIPlfgpqcgkckqclnprp 100
                        90       100       110       120       130       140       150       160
                ....*....|....*....|....*....|....*....|....*....|....*....|....*....|....*....|
gi 52783098 129 -------------------------------FVNYNAWAEVVCTPVEFVYKIPDDMSFSEAAAFPMNFVTAYVMLFEVAN 177
Cdd:cd05279 101 nlcsksrgtngrglmsdgtsrftckgkpihhFLGTSTFAEYTVVSEISLAKIDPDAPLEKVCLIGCGFSTGYGAAVNTAK 180
                       170       180       190       200       210       220       230       240
                ....*....|....*....|....*....|....*....|....*....|....*....|....*....|....*....|
gi 52783098 178 LREGMSVLVHSAgGGVGQAV---AQLCSTVPNVTV------FGTASTF----------KHEAIKDSVTHLFDRNADYVQE 238
Cdd:cd05279 181 VTPGSTCAVFGL-GGVGLSVimgCKAAGASRIIAVdinkdkFEKAKQLgatecinprdQDKPIVEVLTEMTDGGVDYAFE 259
                       250       260       270       280       290       300       310       320
                ....*....|....*....|....*....|....*....|....*....|....*....|....*....|....*....|
gi 52783098 239 VKRiSAEGVDIVLDClCGDNTGKGLSL-LKPLGTYILYGSSNMVTGET--KSFFSFAKSwwqvekvnpiklyeenkviag 315
Cdd:cd05279 260 VIG-SADTLKQALDA-TRLGGGTSVVVgVPPSGTEATLDPNDLLTGRTikGTVFGGWKS--------------------- 316
                       330       340       350       360       370       380
                ....*....|....*....|....*....|....*....|....*....|....*....|....*
gi 52783098 316 fsllnllfkqgragliRGVVEKLIGLYNQKKIK--PVVDSLWALEEVKEAMQRIHdRGNIGKLIL 378
Cdd:cd05279 317 ----------------KDSVPKLVALYRQKKFPldELITHVLPFEEINDGFDLMR-SGESIRTIL 364
tdh PRK05396
L-threonine 3-dehydrogenase; Validated
42-199 3.89e-13

L-threonine 3-dehydrogenase; Validated


Pssm-ID: 180054 [Multi-domain]  Cd Length: 341  Bit Score: 69.85  E-value: 3.89e-13
                         10        20        30        40        50        60        70        80
                 ....*....|....*....|....*....|....*....|....*....|....*....|....*....|....*....|
gi 52783098   42 MRAVV--LAGFGglnkLRLFRKAMPEPQDGELKIRVKA---CGlnfIDLMVR------QGNIdnppKTPLVPGFECSGIV 110
Cdd:PRK05396   1 MKALVklKAEPG----LWLTDVPVPEPGPNDVLIKVKKtaiCG---TDVHIYnwdewaQKTI----PVPMVVGHEFVGEV 69
                         90       100       110       120       130       140       150       160
                 ....*....|....*....|....*....|....*....|....*....|....*....|....*....|....*....|
gi 52783098  111 EALGDSVKGYEIGDRVMA--------------------------FVNYN-AWAEVVCTPVEFVYKIPDDMSFSEAAAF-P 162
Cdd:PRK05396  70 VEVGSEVTGFKVGDRVSGeghivcghcrncragrrhlcrntkgvGVNRPgAFAEYLVIPAFNVWKIPDDIPDDLAAIFdP 149
                        170       180       190       200
                 ....*....|....*....|....*....|....*....|.
gi 52783098  163 M-NFV-TAYVmlFEVAnlreGMSVLVHSAG--GGVGQAVAQ 199
Cdd:PRK05396 150 FgNAVhTALS--FDLV----GEDVLITGAGpiGIMAAAVAK 184
crotonyl_coA_red cd08246
crotonyl-CoA reductase; Crotonyl-CoA reductase, a member of the medium chain dehydrogenase ...
64-201 3.89e-12

crotonyl-CoA reductase; Crotonyl-CoA reductase, a member of the medium chain dehydrogenase/reductase family, catalyzes the NADPH-dependent conversion of crotonyl-CoA to butyryl-CoA, a step in (2S)-methylmalonyl-CoA production for straight-chain fatty acid biosynthesis. Like enoyl reductase, another enzyme in fatty acid synthesis, crotonyl-CoA reductase is a member of the zinc-dependent alcohol dehydrogenase-like medium chain dehydrogenase/reductase family. The medium chain dehydrogenases/reductase (MDR)/zinc-dependent alcohol dehydrogenase-like family, which contains the zinc-dependent alcohol dehydrogenase (ADH-Zn) and related proteins, is a diverse group of proteins related to the first identified member, class I mammalian ADH. MDRs display a broad range of activities and are distinguished from the smaller short chain dehydrogenases (~ 250 amino acids vs. the ~ 350 amino acids of the MDR). The MDR proteins have 2 domains: a C-terminal NAD(P) binding-Rossmann fold domain of a beta-alpha form and an N-terminal catalytic domain with distant homology to GroES.


Pssm-ID: 176208 [Multi-domain]  Cd Length: 393  Bit Score: 67.44  E-value: 3.89e-12
                        10        20        30        40        50        60        70        80
                ....*....|....*....|....*....|....*....|....*....|....*....|....*....|....*....|
gi 52783098  64 PEPQDGELKIRVKACGLNF----------IDLM-VRQGNIDNPPKTplVPGFECSGIVEALGDSVKGYEIGDRVMAF--- 129
Cdd:cd08246  38 PELGPGEVLVAVMAAGVNYnnvwaalgepVSTFaARQRRGRDEPYH--IGGSDASGIVWAVGEGVKNWKVGDEVVVHcsv 115
                        90       100       110       120       130       140       150       160
                ....*....|....*....|....*....|....*....|....*....|....*....|....*....|....*....|
gi 52783098 130 -------------------------VNYNAWAEVVCTPVEFVYKIPDDMSFSEAAAFPMNFVTAYVMLF--EVANLREGM 182
Cdd:cd08246 116 wdgndperaggdpmfdpsqriwgyeTNYGSFAQFALVQATQLMPKPKHLSWEEAAAYMLVGATAYRMLFgwNPNTVKPGD 195
                       170
                ....*....|....*....
gi 52783098 183 SVLVHSAGGGVGQAVAQLC 201
Cdd:cd08246 196 NVLIWGASGGLGSMAIQLA 214
PGDH cd05288
Prostaglandin dehydrogenases; Prostaglandins and related eicosanoids are metabolized by the ...
43-378 9.87e-12

Prostaglandin dehydrogenases; Prostaglandins and related eicosanoids are metabolized by the oxidation of the 15(S)-hydroxyl group of the NAD+-dependent (type I 15-PGDH) 15-prostaglandin dehydrogenase (15-PGDH) followed by reduction by NADPH/NADH-dependent (type II 15-PGDH) delta-13 15-prostaglandin reductase (13-PGR) to 15-keto-13,14,-dihydroprostaglandins. 13-PGR is a bifunctional enzyme, since it also has leukotriene B(4) 12-hydroxydehydrogenase activity. These 15-PGDH and related enzymes are members of the medium chain dehydrogenase/reductase family. The medium chain dehydrogenases/reductase (MDR)/zinc-dependent alcohol dehydrogenase-like family, which contains the zinc-dependent alcohol dehydrogenase (ADH-Zn) and related proteins, is a diverse group of proteins related to the first identified member, class I mammalian ADH. MDRs display a broad range of activities and are distinguished from the smaller short chain dehydrogenases (~ 250 amino acids vs. the ~ 350 amino acids of the MDR). The MDR proteins have 2 domains: a C-terminal NAD(P) binding-Rossmann fold domain of a beta-alpha form and an N-terminal catalytic domain with distant homology to GroES.


Pssm-ID: 176190 [Multi-domain]  Cd Length: 329  Bit Score: 65.58  E-value: 9.87e-12
                        10        20        30        40        50        60        70        80
                ....*....|....*....|....*....|....*....|....*....|....*....|....*....|....*....|
gi 52783098  43 RAVVLA----GFGGLNKLRLFRKAMPEPQDGELKIRVKACGLnfiDLMVRqGNIdNPPKTPlVPGFECSGIVEALGDSV- 117
Cdd:cd05288   3 RQVVLAkrpeGPPPPDDFELVEVPLPELKDGEVLVRTLYLSV---DPYMR-GWM-SDAKSY-SPPVQLGEPMRGGGVGEv 76
                        90       100       110       120       130       140       150       160
                ....*....|....*....|....*....|....*....|....*....|....*....|....*....|....*....|
gi 52783098 118 -----KGYEIGDRVMAFVNynaWAE-VVCTPVEFVYKIPDDMSFSEAAAFP---MNFVTAYVMLFEVANLREGMSVLVHS 188
Cdd:cd05288  77 vesrsPDFKVGDLVSGFLG---WQEyAVVDGASGLRKLDPSLGLPLSAYLGvlgMTGLTAYFGLTEIGKPKPGETVVVSA 153
                       170       180       190       200       210       220       230       240
                ....*....|....*....|....*....|....*....|....*....|....*....|....*....|....*....|
gi 52783098 189 AGGGVGQAVAQL-----CstvpnvTVFGTASTfkHEAIKDSVTHL-FD-----RNADYVQEVKRISAEGVDIVLDCLCGD 257
Cdd:cd05288 154 AAGAVGSVVGQIakllgA------RVVGIAGS--DEKCRWLVEELgFDaainyKTPDLAEALKEAAPDGIDVYFDNVGGE 225
                       250       260       270       280       290       300       310       320
                ....*....|....*....|....*....|....*....|....*....|....*....|....*....|....*....|
gi 52783098 258 NTGKGLSLLKPLGTYILYGssnMVTGETKSFFSFAKSWWQVEKVNpIKlyeenkvIAGFSLLNLLFKQGRAglirgvVEK 337
Cdd:cd05288 226 ILDAALTLLNKGGRIALCG---AISQYNATEPPGPKNLGNIITKR-LT-------MQGFIVSDYADRFPEA------LAE 288
                       330       340       350       360
                ....*....|....*....|....*....|....*....|.
gi 52783098 338 LIGLYNQKKIKPVVDSLWALEEVKEAMQRIHDRGNIGKLIL 378
Cdd:cd05288 289 LAKWLAEGKLKYREDVVEGLENAPEAFLGLFTGKNTGKLVV 329
benzyl_alcohol_DH cd08278
Benzyl alcohol dehydrogenase; Benzyl alcohol dehydrogenase is similar to liver alcohol ...
65-351 1.32e-11

Benzyl alcohol dehydrogenase; Benzyl alcohol dehydrogenase is similar to liver alcohol dehydrogenase, but has some amino acid substitutions near the active site, which may determine the enzyme's specificity of oxidizing aromatic substrates. Also known as aryl-alcohol dehydrogenases, they catalyze the conversion of an aromatic alcohol + NAD+ to an aromatic aldehyde + NADH + H+. NAD(P)(H)-dependent oxidoreductases are the major enzymes in the interconversion of alcohols and aldehydes, or ketones. Alcohol dehydrogenase in the liver converts ethanol and NAD+ to acetaldehyde and NADH, while in yeast and some other microorganisms ADH catalyzes the conversion acetaldehyde to ethanol in alcoholic fermentation. ADH is a member of the medium chain alcohol dehydrogenase family (MDR), which has a NAD(P)(H)-binding domain in a Rossmann fold of a beta-alpha form. The NAD(H)-binding region is comprised of 2 structurally similar halves, each of which contacts a mononucleotide. A GxGxxG motif after the first mononucleotide contact half allows the close contact of the coenzyme with the ADH backbone. The N-terminal catalytic domain has a distant homology to GroES. These proteins typically form dimers (typically higher plants, mammals) or tetramers (yeast, bacteria), and have 2 tightly bound zinc atoms per subunit, a catalytic zinc at the active site and a structural zinc in a lobe of the catalytic domain. NAD(H) binding occurs in the cleft between the catalytic and coenzyme-binding domains at the active site, and coenzyme binding induces a conformational closing of this cleft. Coenzyme binding typically precedes and contributes to substrate binding. In human ADH catalysis, the zinc ion helps coordinate the alcohol, followed by deprotonation of a histidine, the ribose of NAD, a serine, then the alcohol, which allows the transfer of a hydride to NAD+, creating NADH and a zinc-bound aldehyde or ketone. In yeast and some bacteria, the active site zinc binds an aldehyde, polarizing it, and leading to the reverse reaction.


Pssm-ID: 176239 [Multi-domain]  Cd Length: 365  Bit Score: 65.60  E-value: 1.32e-11
                        10        20        30        40        50        60        70        80
                ....*....|....*....|....*....|....*....|....*....|....*....|....*....|....*....|
gi 52783098  65 EPQDGELKIRVKACGLNFIDLMVRQGNIdnPPKTPLVPGFECSGIVEALGDSVKGYEIGDRVMA---------------- 128
Cdd:cd08278  24 DPRPDEVLVRIVATGICHTDLVVRDGGL--PTPLPAVLGHEGAGVVEAVGSAVTGLKPGDHVVLsfascgecanclsghp 101
                        90       100       110       120       130       140       150       160
                ....*....|....*....|....*....|....*....|....*....|....*....|....*....|....*....|
gi 52783098 129 -----FVNYN----------AWAEVVCTPV--EF----------------VYKIPDDMSFSEAAAFPMNFVTAYVMLFEV 175
Cdd:cd08278 102 aycenFFPLNfsgrrpdgstPLSLDDGTPVhgHFfgqssfatyavvhernVVKVDKDVPLELLAPLGCGIQTGAGAVLNV 181
                       170       180       190       200       210       220       230       240
                ....*....|....*....|....*....|....*....|....*....|....*....|....*....|....*....|
gi 52783098 176 ANLREGMSVLVHSAgGGVG-----QAVAQLCSTVPNVTvfgtastfkheaIKDS---------VTHLFD-RNADYVQEVK 240
Cdd:cd08278 182 LKPRPGSSIAVFGA-GAVGlaavmAAKIAGCTTIIAVD------------IVDSrlelakelgATHVINpKEEDLVAAIR 248
                       250       260       270       280       290       300       310       320
                ....*....|....*....|....*....|....*....|....*....|....*....|....*....|....*....|
gi 52783098 241 RISAEGVDIVLDClcgdnTG------KGLSLLKPLGTYILYGSSNMVTGETksffsfakswwqvekVNPIKLYEENK--- 311
Cdd:cd08278 249 EITGGGVDYALDT-----TGvpavieQAVDALAPRGTLALVGAPPPGAEVT---------------LDVNDLLVSGKtir 308
                       330       340       350       360       370       380
                ....*....|....*....|....*....|....*....|....*....|....*....|..
gi 52783098 312 -VIAGFS--------LLNlLFKQGRAGlirgvVEKLIGLY-----NQ--------KKIKPVV 351
Cdd:cd08278 309 gVIEGDSvpqefiprLIE-LYRQGKFP-----FDKLVTFYpfediNQaiadsesgKVIKPVL 364
FDH_like_2 cd08284
Glutathione-dependent formaldehyde dehydrogenase related proteins, child 2; ...
42-380 2.24e-11

Glutathione-dependent formaldehyde dehydrogenase related proteins, child 2; Glutathione-dependent formaldehyde dehydrogenases (FDHs) are members of the zinc-dependent/medium chain alcohol dehydrogenase family. Formaldehyde dehydrogenase (FDH) is a member of the zinc-dependent/medium chain alcohol dehydrogenase family. FDH converts formaldehyde and NAD to formate and NADH. The initial step in this process the spontaneous formation of a S-(hydroxymethyl)glutathione adduct from formaldehyde and glutathione, followed by FDH-mediated oxidation (and detoxification) of the adduct to S-formylglutathione. These tetrameric FDHs have a catalytic zinc that resides between the catalytic and NAD(H)binding domains and a structural zinc in a lobe of the catalytic domain. The medium chain alcohol dehydrogenase family (MDR) has a NAD(P)(H)-binding domain in a Rossmann fold of a beta-alpha form. The N-terminal region typically has an all-beta catalytic domain. These proteins typically form dimers (typically higher plants, mammals) or tetramers (yeast, bacteria), and have 2 tightly bound zinc atoms per subunit.


Pssm-ID: 176244 [Multi-domain]  Cd Length: 344  Bit Score: 64.59  E-value: 2.24e-11
                        10        20        30        40        50        60        70        80
                ....*....|....*....|....*....|....*....|....*....|....*....|....*....|....*....|
gi 52783098  42 MRAVVlagFGGLNKLRLFRKAMPEPQD-GELKIRVKACGLNFIDLMVRQGNIdnPPKTPLVPGFECSGIVEALGDSVKGY 120
Cdd:cd08284   1 MKAVV---FKGPGDVRVEEVPIPQIQDpTDAIVKVTAAAICGSDLHIYRGHI--PSTPGFVLGHEFVGEVVEVGPEVRTL 75
                        90       100       110       120       130       140       150       160
                ....*....|....*....|....*....|....*....|....*....|....*....|....*....|....*....|
gi 52783098 121 EIGDRVMA------------------------------FVNYN-AWAEVVCTPveF----VYKIPDDMSFSEAAAFPMNF 165
Cdd:cd08284  76 KVGDRVVSpftiacgecfycrrgqsgrcakgglfgyagSPNLDgAQAEYVRVP--FadgtLLKLPDGLSDEAALLLGDIL 153
                       170       180       190       200       210       220       230       240
                ....*....|....*....|....*....|....*....|....*....|....*....|....*....|....*....|
gi 52783098 166 VTAYVMLfEVANLREGMSVLVhsAGGG-VGQ-AVAQLCstvpnvtVFGTASTFKHEAIKD---------SVTHLFDrNAD 234
Cdd:cd08284 154 PTGYFGA-KRAQVRPGDTVAV--IGCGpVGLcAVLSAQ-------VLGAARVFAVDPVPErleraaalgAEPINFE-DAE 222
                       250       260       270       280       290       300       310       320
                ....*....|....*....|....*....|....*....|....*....|....*....|....*....|....*....|
gi 52783098 235 YVQEVKRIS-AEGVDIVLDCLCGDNTGK-GLSLLKPLGTYILYGSSNmvtgetksffsfAKSWwqveKVNPIKLYeeNKv 312
Cdd:cd08284 223 PVERVREATeGRGADVVLEAVGGAAALDlAFDLVRPGGVISSVGVHT------------AEEF----PFPGLDAY--NK- 283
                       330       340       350       360       370       380       390
                ....*....|....*....|....*....|....*....|....*....|....*....|....*....|
gi 52783098 313 iagfsllNLLFKQGRAGlIRGVVEKLIGLYNQKKIKP--VVDSLWALEEVKEAMqRIHDRGNIGKLILDV 380
Cdd:cd08284 284 -------NLTLRFGRCP-VRSLFPELLPLLESGRLDLefLIDHRMPLEEAPEAY-RLFDKRKVLKVVLDP 344
Zn_ADH7 cd08261
Alcohol dehydrogenases of the MDR family; This group contains members identified as related to ...
42-279 8.65e-11

Alcohol dehydrogenases of the MDR family; This group contains members identified as related to zinc-dependent alcohol dehydrogenase and other members of the MDR family. The medium chain dehydrogenases/reductase (MDR)/zinc-dependent alcohol dehydrogenase-like family, which contains the zinc-dependent alcohol dehydrogenase (ADH-Zn) and related proteins, is a diverse group of proteins related to the first identified member, class I mammalian ADH. MDRs display a broad range of activities and are distinguished from the smaller short chain dehydrogenases (~ 250 amino acids vs. the ~ 350 amino acids of the MDR). The MDR proteins have 2 domains: a C-terminal NAD(P)-binding Rossmann fold domain of a beta-alpha form and an N-terminal catalytic domain with distant homology to GroES. The MDR group includes various activities, including the founding alcohol dehydrogenase (ADH), quinone reductase, sorbitol dehydrogenase, formaldehyde dehydrogenase, butanediol DH, ketose reductase, cinnamyl reductase, and numerous others. The zinc-dependent alcohol dehydrogenases (ADHs) catalyze the NAD(P)(H)-dependent interconversion of alcohols to aldehydes or ketones. Active site zinc has a catalytic role, while structural zinc aids in stability. ADH-like proteins typically form dimers (typically higher plants, mammals) or tetramers (yeast, bacteria), and generally have 2 tightly bound zinc atoms per subunit. The active site zinc is coordinated by a histidine, two cysteines, and a water molecule. The second zinc seems to play a structural role, affects subunit interactions, and is typically coordinated by 4 cysteines.


Pssm-ID: 176222 [Multi-domain]  Cd Length: 337  Bit Score: 62.98  E-value: 8.65e-11
                        10        20        30        40        50        60        70        80
                ....*....|....*....|....*....|....*....|....*....|....*....|....*....|....*....|
gi 52783098  42 MRAVVLagfGGLNKLRLFRKAMPEPQDGELKIRVKACGLNFIDLMVRQGNidNPPKT-PLVPGFECSGIVEALGDSVKGY 120
Cdd:cd08261   1 MKALVC---EKPGRLEVVDIPEPVPGAGEVLVRVKRVGICGSDLHIYHGR--NPFASyPRILGHELSGEVVEVGEGVAGL 75
                        90       100       110       120       130       140       150       160
                ....*....|....*....|....*....|....*....|....*....|....*....|....*....|....*....|
gi 52783098 121 EIGDRVmAFVNYN----------------------------AWAEVVCTPVEfVYKIPDDMSFSEAAAfpmnfVTAYVML 172
Cdd:cd08261  76 KVGDRV-VVDPYIscgecyacrkgrpnccenlqvlgvhrdgGFAEYIVVPAD-ALLVPEGLSLDQAAL-----VEPLAIG 148
                       170       180       190       200       210       220       230       240
                ....*....|....*....|....*....|....*....|....*....|....*....|....*....|....*....|
gi 52783098 173 FEV---ANLREGMSVLVHSAgGGVGQAVAQLCSTVpNVTVFGT-ASTFKHEAIKDS-VTHLFD-RNADYVQEVKRISA-E 245
Cdd:cd08261 149 AHAvrrAGVTAGDTVLVVGA-GPIGLGVIQVAKAR-GARVIVVdIDDERLEFARELgADDTINvGDEDVAARLRELTDgE 226
                       250       260       270
                ....*....|....*....|....*....|....*
gi 52783098 246 GVDIVLDCLCGDNT-GKGLSLLKPLGTYILYGSSN 279
Cdd:cd08261 227 GADVVIDATGNPASmEEAVELVAHGGRVVLVGLSK 261
ADH_zinc_N_2 pfam13602
Zinc-binding dehydrogenase;
226-378 5.86e-10

Zinc-binding dehydrogenase;


Pssm-ID: 433341 [Multi-domain]  Cd Length: 131  Bit Score: 56.95  E-value: 5.86e-10
                          10        20        30        40        50        60        70        80
                  ....*....|....*....|....*....|....*....|....*....|....*....|....*....|....*....|
gi 52783098   226 THLFD-RNADYVQEVKRisaEGVDIVLDCLCGDNTGKGLSLLKPLGTYILYGssnmvtgetKSFFSFAKSWWQVEKVNPI 304
Cdd:pfam13602   4 DEVIDyRTTDFVQATGG---EGVDVVLDTVGGEAFEASLRVLPGGGRLVTIG---------GPPLSAGLLLPARKRGGRG 71
                          90       100       110       120       130       140       150
                  ....*....|....*....|....*....|....*....|....*....|....*....|....*....|....
gi 52783098   305 KLYEENKViagfsllnllfkqgRAGLIRGVVEKLIGLYNQKKIKPVVDSLWALEEVKEAMQRIHDRGNIGKLIL 378
Cdd:pfam13602  72 VKYLFLFV--------------RPNLGADILQELADLIEEGKLRPVIDRVFPLEEAAEAHRYLESGRARGKIVL 131
Zn_ADH2 cd08256
Alcohol dehydrogenases of the MDR family; This group has the characteristic catalytic and ...
42-160 9.97e-10

Alcohol dehydrogenases of the MDR family; This group has the characteristic catalytic and structural zinc-binding sites of the zinc-dependent alcohol dehydrogenases of the MDR family. The medium chain dehydrogenases/reductase (MDR)/zinc-dependent alcohol dehydrogenase-like family, which contains the zinc-dependent alcohol dehydrogenase (ADH-Zn) and related proteins, is a diverse group of proteins related to the first identified member, class I mammalian ADH. MDRs display a broad range of activities and are distinguished from the smaller short chain dehydrogenases (~ 250 amino acids vs. the ~ 350 amino acids of the MDR). The MDR proteins have 2 domains: a C-terminal NAD(P)-binding Rossmann fold domain of a beta-alpha form and an N-terminal catalytic domain with distant homology to GroES. The MDR group contains a host of activities, including the founding alcohol dehydrogenase (ADH), quinone reductase, sorbitol dehydrogenase, formaldehyde dehydrogenase, butanediol DH, ketose reductase, cinnamyl reductase, and numerous others. The zinc-dependent alcohol dehydrogenases (ADHs) catalyze the NAD(P)(H)-dependent interconversion of alcohols to aldehydes or ketones. Active site zinc has a catalytic role, while structural zinc aids in stability.


Pssm-ID: 176218 [Multi-domain]  Cd Length: 350  Bit Score: 59.73  E-value: 9.97e-10
                        10        20        30        40        50        60        70        80
                ....*....|....*....|....*....|....*....|....*....|....*....|....*....|....*....|
gi 52783098  42 MRAVVLAGFGglnKLRLFRKAMPEPQDGELKIRVKACGLNFIDLMVRQG------NIDNPP--KTPLVPGFECSGIVEAL 113
Cdd:cd08256   1 MRAVVCHGPQ---DYRLEEVPVPRPGPGEILVKVEACGICAGDIKCYHGapsfwgDENQPPyvKPPMIPGHEFVGRVVEL 77
                        90       100       110       120       130       140       150
                ....*....|....*....|....*....|....*....|....*....|....*....|....*....|....*....
gi 52783098 114 GDSV--KGYEIGDRVMA----------FVNY-------------------NAWAEVVCTPVE-FVYKIPDDMSFSEAAA 160
Cdd:cd08256  78 GEGAeeRGVKVGDRVISeqivpcwncrFCNRgqywmcqkhdlygfqnnvnGGMAEYMRFPKEaIVHKVPDDIPPEDAIL 156
TDH cd05281
Threonine dehydrogenase; L-threonine dehydrogenase (TDH) catalyzes the zinc-dependent ...
42-252 1.23e-09

Threonine dehydrogenase; L-threonine dehydrogenase (TDH) catalyzes the zinc-dependent formation of 2-amino-3-ketobutyrate from L-threonine via NAD(H)- dependent oxidation. THD is a member of the zinc-requiring, medium chain NAD(H)-dependent alcohol dehydrogenase family (MDR). MDRs have a NAD(P)(H)-binding domain in a Rossmann fold of a beta-alpha form. NAD(P)(H)-dependent oxidoreductases are the major enzymes in the interconversion of alcohols and aldehydes, or ketones. The N-terminal region typically has an all-beta catalytic domain. These proteins typically form dimers (typically higher plants, mammals) or tetramers (yeast, bacteria) and have 2 tightly bound zinc atoms per subunit. Sorbitol and aldose reductase are NAD(+) binding proteins of the polyol pathway, which interconverts glucose and fructose.


Pssm-ID: 176184 [Multi-domain]  Cd Length: 341  Bit Score: 59.17  E-value: 1.23e-09
                        10        20        30        40        50        60        70        80
                ....*....|....*....|....*....|....*....|....*....|....*....|....*....|....*....|
gi 52783098  42 MRAVV--LAGFGglnkLRLFRKAMPEPQDGELKIRVKA---CGlnfIDLMV------RQGNIdnppKTPLVPGFECSGIV 110
Cdd:cd05281   1 MKAIVktKAGPG----AELVEVPVPKPGPGEVLIKVLAasiCG---TDVHIyewdewAQSRI----KPPLIFGHEFAGEV 69
                        90       100       110       120       130       140       150       160
                ....*....|....*....|....*....|....*....|....*....|....*....|....*....|....*....|
gi 52783098 111 EALGDSVKGYEIGDRVMA---FV----------NYN--------------AWAEVVCTPVEFVYKIPDDMSFSEAAAF-P 162
Cdd:cd05281  70 VEVGEGVTRVKVGDYVSAethIVcgkcyqcrtgNYHvcqntkilgvdtdgCFAEYVVVPEENLWKNDKDIPPEIASIQeP 149
                       170       180       190       200       210       220       230       240
                ....*....|....*....|....*....|....*....|....*....|....*....|....*....|....*....|
gi 52783098 163 M-NFVTAyVMLFEVAnlreGMSVLVHSAG--GGVGQAVAQLCSTVPnvtVFGT-ASTFKHE-AIKDSVTHLFDRNADYVQ 237
Cdd:cd05281 150 LgNAVHT-VLAGDVS----GKSVLITGCGpiGLMAIAVAKAAGASL---VIASdPNPYRLElAKKMGADVVINPREEDVV 221
                       250
                ....*....|....*.
gi 52783098 238 EVKRIS-AEGVDIVLD 252
Cdd:cd05281 222 EVKSVTdGTGVDVVLE 237
MDR_yhfp_like cd08289
Yhfp putative quinone oxidoreductases; yhfp putative quinone oxidoreductases (QOR). QOR ...
67-285 6.63e-09

Yhfp putative quinone oxidoreductases; yhfp putative quinone oxidoreductases (QOR). QOR catalyzes the conversion of a quinone + NAD(P)H to a hydroquinone + NAD(P)+. Quinones are cyclic diones derived from aromatic compounds. Membrane bound QOR actin the respiratory chains of bacteria and mitochondria, while soluble QOR acts to protect from toxic quinones (e.g. DT-diaphorase) or as a soluble eye-lens protein in some vertebrates (e.g. zeta-crystalin). QOR reduces quinones through a semi-quinone intermediate via a NAD(P)H-dependent single electron transfer. QOR is a member of the medium chain dehydrogenase/reductase family, but lacks the zinc-binding sites of the prototypical alcohol dehydrogenases of this group. NAD(P)(H)-dependent oxidoreductases are the major enzymes in the interconversion of alcohols and aldehydes, or ketones. Alcohol dehydrogenase in the liver converts ethanol and NAD+ to acetaldehyde and NADH, while in yeast and some other microorganisms ADH catalyzes the conversion acetaldehyde to ethanol in alcoholic fermentation. ADH is a member of the medium chain alcohol dehydrogenase family (MDR), which has a NAD(P)(H)-binding domain in a Rossmann fold of a beta-alpha form. The NAD(H)-binding region is comprised of 2 structurally similar halves, each of which contacts a mononucleotide. A GxGxxG motif after the first mononucleotide contact half allows the close contact of the coenzyme with the ADH backbone. The N-terminal catalytic domain has a distant homology to GroES. These proteins typically form dimers (typically higher plants, mammals) or tetramers (yeast, bacteria), and have 2 tightly bound zinc atoms per subunit, a catalytic zinc at the active site, and a structural zinc in a lobe of the catalytic domain. NAD(H) binding occurs in the cleft between the catalytic and coenzyme-binding domains at the active site, and coenzyme binding induces a conformational closing of this cleft. Coenzyme binding typically precedes and contributes to substrate binding. In human ADH catalysis, the zinc ion helps coordinate the alcohol, followed by deprotonation of a histidine, the ribose of NAD, a serine, then the alcohol, which allows the transfer of a hydride to NAD+, creating NADH and a zinc-bound aldehyde or ketone. In yeast and some bacteria, the active site zinc binds an aldehyde, polarizing it, and leading to the reverse reaction.


Pssm-ID: 176249 [Multi-domain]  Cd Length: 326  Bit Score: 56.95  E-value: 6.63e-09
                        10        20        30        40        50        60        70        80
                ....*....|....*....|....*....|....*....|....*....|....*....|....*....|....*....|
gi 52783098  67 QDGELKIRVKACGLNFIDLMVRQ--GNIDNppKTPLVPGFECSGIVE-------ALGDSV--KGYEIGdrVMAFVNYNAW 135
Cdd:cd08289  26 PEGDVLIRVAYSSVNYKDGLASIpgGKIVK--RYPFIPGIDLAGTVVesndprfKPGDEVivTSYDLG--VSHHGGYSEY 101
                        90       100       110       120       130       140       150       160
                ....*....|....*....|....*....|....*....|....*....|....*....|....*....|....*....|
gi 52783098 136 AEVvctPVEFVYKIPDDMSFSEAAAFPMNFVTA--YVMLFEVANLR-EGMSVLVHSAGGGVGQ-AVAQLCSTVPNVtvfg 211
Cdd:cd08289 102 ARV---PAEWVVPLPKGLTLKEAMILGTAGFTAalSIHRLEENGLTpEQGPVLVTGATGGVGSlAVSILAKLGYEV---- 174
                       170       180       190       200       210       220       230
                ....*....|....*....|....*....|....*....|....*....|....*....|....*....|....*...
gi 52783098 212 TASTFKHEA----IKDSVTHLFDRNADYVQEVKRISAEGVDIVLDCLCGDNTGKGLSLLKplgtyilYGSSNMVTGET 285
Cdd:cd08289 175 VASTGKADAadylKKLGAKEVIPREELQEESIKPLEKQRWAGAVDPVGGKTLAYLLSTLQ-------YGGSVAVSGLT 245
double_bond_reductase_like cd08295
Arabidopsis alkenal double bond reductase and leukotriene B4 12-hydroxydehydrogenase; This ...
120-380 1.00e-08

Arabidopsis alkenal double bond reductase and leukotriene B4 12-hydroxydehydrogenase; This group includes proteins identified as the Arabidopsis alkenal double bond reductase and leukotriene B4 12-hydroxydehydrogenase. The Arabidopsis enzyme, a member of the medium chain dehydrogenase/reductase family, catalyzes the reduction of 7-8-double bond of phenylpropanal substrates as a plant defense mechanism. Prostaglandins and related eicosanoids (lipid mediators involved in host defense and inflamation) are metabolized by the oxidation of the 15(S)-hydroxyl group of the NAD+-dependent (type I 15-PGDH) 15-prostaglandin dehydrogenase (15-PGDH) followed by reduction by NADPH/NADH-dependent (type II 15-PGDH) delta-13 15-prostaglandin reductase (13-PGR) to 15-keto-13,14,-dihydroprostaglandins. 13-PGR is a bifunctional enzyme, since it also has leukotriene B(4) 12-hydroxydehydrogenase activity. Leukotriene B4 (LTB4) can be metabolized by LTB4 20-hydroxylase in inflamatory cells, and in other cells by bifunctional LTB4 12-HD/PGR. These 15-PGDH and related enzymes are members of the medium chain dehydrogenase/reductase family. The medium chain dehydrogenases/reductase (MDR)/zinc-dependent alcohol dehydrogenase-like family, which contains the zinc-dependent alcohol dehydrogenase (ADH-Zn) and related proteins, is a diverse group of proteins related to the first identified member, class I mammalian ADH. MDRs display a broad range of activities and are distinguished from the smaller short chain dehydrogenases (~ 250 amino acids vs. the ~ 350 amino acids of the MDR). The MDR proteins have 2 domains: a C-terminal NAD(P) binding-Rossmann fold domain of an beta-alpha form and an N-terminal catalytic domain with distant homology to GroES.


Pssm-ID: 176255 [Multi-domain]  Cd Length: 338  Bit Score: 56.56  E-value: 1.00e-08
                        10        20        30        40        50        60        70        80
                ....*....|....*....|....*....|....*....|....*....|....*....|....*....|....*....|
gi 52783098 120 YEIGDRVMAFVNynaWAE-VVCTPVEFVYKI-PDDMSFSE-AAAFPMNFVTAYVMLFEVANLREGMSVLVHSAGGGVGQA 196
Cdd:cd08295  91 FKVGDLVWGFTG---WEEySLIPRGQDLRKIdHTDVPLSYyLGLLGMPGLTAYAGFYEVCKPKKGETVFVSAASGAVGQL 167
                        90       100       110       120       130       140       150       160
                ....*....|....*....|....*....|....*....|....*....|....*....|....*....|....*....|
gi 52783098 197 VAQLcSTVPNVTVFGTASTfkheaiKDSVTHL-----FDRNADYVQE------VKRISAEGVDIVLdclcgDNTGkGLSL 265
Cdd:cd08295 168 VGQL-AKLKGCYVVGSAGS------DEKVDLLknklgFDDAFNYKEEpdldaaLKRYFPNGIDIYF-----DNVG-GKML 234
                       170       180       190       200       210       220       230       240
                ....*....|....*....|....*....|....*....|....*....|....*....|....*....|....*....|
gi 52783098 266 LKPLGTYILYGssnmvtgetksffsfakswwQVEKVNPIKLYEENKVIAGFSLLNLLFKQGRaglIRGVV---------- 335
Cdd:cd08295 235 DAVLLNMNLHG--------------------RIAACGMISQYNLEWPEGVRNLLNIIYKRVK---IQGFLvgdylhrype 291
                       250       260       270       280
                ....*....|....*....|....*....|....*....|....*..
gi 52783098 336 --EKLIGLYNQKKIKPVVDSLWALEEVKEAMQRIHDRGNIGKLILDV 380
Cdd:cd08295 292 flEEMSGYIKEGKLKYVEDIADGLESAPEAFVGLFTGSNIGKQVVKV 338
MDR_TM0436_like cd08231
Hypothetical enzyme TM0436 resembles the zinc-dependent alcohol dehydrogenases (ADH); This ...
43-277 1.24e-08

Hypothetical enzyme TM0436 resembles the zinc-dependent alcohol dehydrogenases (ADH); This group contains the hypothetical TM0436 alcohol dehydrogenase from Thermotoga maritima, proteins annotated as 5-exo-alcohol dehydrogenase, and other members of the medium chain dehydrogenases/reductase (MDR)/zinc-dependent alcohol dehydrogenase-like family. MDR, which contains the zinc-dependent alcohol dehydrogenase (ADH-Zn) and related proteins, is a diverse group of proteins related to the first identified member, class I mammalian ADH. MDRs display a broad range of activities and are distinguished from the smaller short chain dehydrogenases (~ 250 amino acids vs. the ~ 350 amino acids of the MDR). The MDR proteins have 2 domains: a C-terminal NAD(P) binding-Rossmann fold domain of a beta-alpha form and an N-terminal catalytic domain with distant homology to GroES. The MDR group contains a host of activities, including the founding alcohol dehydrogenase (ADH), quinone reductase, sorbitol dehydrogenase, formaldehyde dehydrogenase, butanediol DH, ketose reductase, cinnamyl reductase, and numerous others. The zinc-dependent alcohol dehydrogenases (ADHs) catalyze the NAD(P)(H)-dependent interconversion of alcohols to aldehydes or ketones. Active site zinc has a catalytic role, while structural zinc aids in stability.


Pssm-ID: 176193 [Multi-domain]  Cd Length: 361  Bit Score: 56.50  E-value: 1.24e-08
                        10        20        30        40        50        60        70        80
                ....*....|....*....|....*....|....*....|....*....|....*....|....*....|....*....|
gi 52783098  43 RAVVLAGFGGLNKLRLFrkAMPEPQDGELKIRVKACGLNFIDLMVRQGNIDNPPkTPLVPGFECSGIVEALGDSVK---- 118
Cdd:cd08231   2 RAAVLTGPGKPLEIREV--PLPDLEPGAVLVRVRLAGVCGSDVHTVAGRRPRVP-LPIILGHEGVGRVVALGGGVTtdva 78
                        90       100       110       120       130       140       150       160
                ....*....|....*....|....*....|....*....|....*....|....*....|....*....|....*....|
gi 52783098 119 GYEI--GDRVMAFVN------YN----------------------------AWAEVVCTPVEF-VYKIPDDMsfSEAAAF 161
Cdd:cd08231  79 GEPLkvGDRVTWSVGapcgrcYRclvgdptkcenrkkygheascddphlsgGYAEHIYLPPGTaIVRVPDNV--PDEVAA 156
                       170       180       190       200       210       220       230       240
                ....*....|....*....|....*....|....*....|....*....|....*....|....*....|....*....|
gi 52783098 162 PMNFVTAYVM-LFEVANLREGMSVLVHSAGGGVGQAVAQLCST--VPNVTVFG-------TASTFKHEAIKDSVTHLFDR 231
Cdd:cd08231 157 PANCALATVLaALDRAGPVGAGDTVVVQGAGPLGLYAVAAAKLagARRVIVIDgsperleLAREFGADATIDIDELPDPQ 236
                       250       260       270       280
                ....*....|....*....|....*....|....*....|....*...
gi 52783098 232 NADYVQEvkRISAEGVDIVLDClCGDNTG--KGLSLLKPLGTYILYGS 277
Cdd:cd08231 237 RRAIVRD--ITGGRGADVVIEA-SGHPAAvpEGLELLRRGGTYVLVGS 281
MDR_yhdh cd08288
Yhdh putative quinone oxidoreductases; Yhdh putative quinone oxidoreductases (QOR). QOR ...
68-200 2.92e-08

Yhdh putative quinone oxidoreductases; Yhdh putative quinone oxidoreductases (QOR). QOR catalyzes the conversion of a quinone + NAD(P)H to a hydroquinone + NAD(P)+. Quinones are cyclic diones derived from aromatic compounds. Membrane bound QOR actin the respiratory chains of bacteria and mitochondria, while soluble QOR acts to protect from toxic quinones (e.g. DT-diaphorase) or as a soluble eye-lens protein in some vertebrates (e.g. zeta-crystalin). QOR reduces quinones through a semi-quinone intermediate via a NAD(P)H-dependent single electron transfer. QOR is a member of the medium chain dehydrogenase/reductase family, but lacks the zinc-binding sites of the prototypical alcohol dehydrogenases of this group. NAD(P)(H)-dependent oxidoreductases are the major enzymes in the interconversion of alcohols and aldehydes, or ketones. Alcohol dehydrogenase in the liver converts ethanol and NAD+ to acetaldehyde and NADH, while in yeast and some other microorganisms ADH catalyzes the conversion acetaldehyde to ethanol in alcoholic fermentation. ADH is a member of the medium chain alcohol dehydrogenase family (MDR), which has a NAD(P)(H)-binding domain in a Rossmann fold of a beta-alpha form. The NAD(H)-binding region is comprised of 2 structurally similar halves, each of which contacts a mononucleotide. A GxGxxG motif after the first mononucleotide contact half allows the close contact of the coenzyme with the ADH backbone. The N-terminal catalytic domain has a distant homology to GroES. These proteins typically form dimers (typically higher plants, mammals) or tetramers (yeast, bacteria), and have 2 tightly bound zinc atoms per subunit, a catalytic zinc at the active site and a structural zinc in a lobe of the catalytic domain. NAD(H) binding occurs in the cleft between the catalytic and coenzyme-binding domains at the active site, and coenzyme binding induces a conformational closing of this cleft. Coenzyme binding typically precedes and contributes to substrate binding. In human ADH catalysis, the zinc ion helps coordinate the alcohol, followed by deprotonation of a histidine, the ribose of NAD, a serine, then the alcohol, which allows the transfer of a hydride to NAD+, creating NADH and a zinc-bound aldehyde or ketone. In yeast and some bacteria, the active site zinc binds an aldehyde, polarizing it, and leading to the reverse reaction.


Pssm-ID: 176248 [Multi-domain]  Cd Length: 324  Bit Score: 54.85  E-value: 2.92e-08
                        10        20        30        40        50        60        70        80
                ....*....|....*....|....*....|....*....|....*....|....*....|....*....|....*....|
gi 52783098  68 DGELKIRVKACGLNFIDLMVRQGNidnPP---KTPLVPGFECSGIVEALGDSvkGYEIGDRVMAfvnyNAW--------- 135
Cdd:cd08288  27 EGDVTVEVHYSTLNYKDGLAITGK---GGivrTFPLVPGIDLAGTVVESSSP--RFKPGDRVVL----TGWgvgerhwgg 97
                        90       100       110       120       130       140       150
                ....*....|....*....|....*....|....*....|....*....|....*....|....*....|..
gi 52783098 136 -AEVVCTPVEFVYKIPDDMSFSEAAAFPMNFVTAyvMLFEVANLREGMS-----VLVHSAGGGVGQ-AVAQL 200
Cdd:cd08288  98 yAQRARVKADWLVPLPEGLSARQAMAIGTAGFTA--MLCVMALEDHGVTpgdgpVLVTGAAGGVGSvAVALL 167
Zn_ADH3 cd08265
Alcohol dehydrogenases of the MDR family; This group resembles the zinc-dependent alcohol ...
55-190 3.64e-08

Alcohol dehydrogenases of the MDR family; This group resembles the zinc-dependent alcohol dehydrogenase and has the catalytic and structural zinc-binding sites characteristic of this group. The medium chain dehydrogenases/reductase (MDR)/zinc-dependent alcohol dehydrogenase-like family, which contains the zinc-dependent alcohol dehydrogenase (ADH-Zn) and related proteins, is a diverse group of proteins related to the first identified member, class I mammalian ADH. MDRs display a broad range of activities and are distinguished from the smaller short chain dehydrogenases (~ 250 amino acids vs. the ~ 350 amino acids of the MDR). The MDR proteins have 2 domains: a C-terminal NAD(P) binding-Rossmann fold domain of a beta-alpha form and an N-terminal catalytic domain with distant homology to GroES. The MDR group contains a host of activities, including the founding alcohol dehydrogenase (ADH), quinone reductase, sorbitol dehydrogenase, formaldehyde dehydrogenase, butanediol DH, ketose reductase, cinnamyl reductase, and numerous others. The zinc-dependent alcohol dehydrogenases (ADHs) catalyze the NAD(P)(H)-dependent interconversion of alcohols to aldehydes or ketones. Active site zinc has a catalytic role, while structural zinc aids in stability. ADH-like proteins typically form dimers (typically higher plants, mammals) or tetramers (yeast, bacteria), and generally have 2 tightly bound zinc atoms per subunit. The active site zinc is coordinated by a histidine, two cysteines, and a water molecule. The second zinc seems to play a structural role, affects subunit interactions, and is typically coordinated by 4 cysteines. Other MDR members have only a catalytic zinc, and some contain no coordinated zinc.


Pssm-ID: 176226 [Multi-domain]  Cd Length: 384  Bit Score: 54.83  E-value: 3.64e-08
                        10        20        30        40        50        60        70        80
                ....*....|....*....|....*....|....*....|....*....|....*....|....*....|....*....|
gi 52783098  55 KLRLFRKAMPEPQDGELKIRVKACGLNFIDLMVRQ----GNIDNPPKT--PLVPGFECSGIVEALGDSVKGYEIGDRV-- 126
Cdd:cd08265  38 ELRVEDVPVPNLKPDEILIRVKACGICGSDIHLYEtdkdGYILYPGLTefPVVIGHEFSGVVEKTGKNVKNFEKGDPVta 117
                        90       100       110       120       130       140       150       160
                ....*....|....*....|....*....|....*....|....*....|....*....|....*....|....*....|
gi 52783098 127 -------------------------MAFVNYNAWAEVVCTPVEFVYKIPD-------DMSFsEAAAFPMNFVTAYVMLFE 174
Cdd:cd08265 118 eemmwcgmcracrsgspnhcknlkeLGFSADGAFAEYIAVNARYAWEINElreiyseDKAF-EAGALVEPTSVAYNGLFI 196
                       170
                ....*....|....*..
gi 52783098 175 VA-NLREGMSVLVHSAG 190
Cdd:cd08265 197 RGgGFRPGAYVVVYGAG 213
oxido_YhdH TIGR02823
putative quinone oxidoreductase, YhdH/YhfP family; This model represents a subfamily of ...
68-271 8.90e-08

putative quinone oxidoreductase, YhdH/YhfP family; This model represents a subfamily of pfam00107 as defined by Pfam, a superfamily in which some members are zinc-binding medium-chain alcohol dehydrogenases while others are quinone oxidoreductases with no bound zinc. This subfamily includes proteins studied crystallographically for insight into function: YhdH from Escherichia coli and YhfP from Bacillus subtilis. Members bind NADPH or NAD, but not zinc. [Unknown function, Enzymes of unknown specificity]


Pssm-ID: 274315 [Multi-domain]  Cd Length: 323  Bit Score: 53.33  E-value: 8.90e-08
                          10        20        30        40        50        60        70        80
                  ....*....|....*....|....*....|....*....|....*....|....*....|....*....|....*....|
gi 52783098    68 DGELKIRVKACGLNFIDLMVRQGNIDNPPKTPLVPGFECSGIVEALGDSvkGYEIGDRVMAF-----VNYN-AWAEVVCT 141
Cdd:TIGR02823  26 EGDVLIKVAYSSLNYKDALAITGKGGVVRSYPMIPGIDAAGTVVSSEDP--RFREGDEVIVTgyglgVSHDgGYSQYARV 103
                          90       100       110       120       130       140       150       160
                  ....*....|....*....|....*....|....*....|....*....|....*....|....*....|....*....|
gi 52783098   142 PVEFVYKIPDDMSFSEAAAFPMNFVTAY--VMLFEVANLREGM-SVLVHSAGGGVGQ-AVAQLCSTVPNVTVFgTASTFK 217
Cdd:TIGR02823 104 PADWLVPLPEGLSLREAMALGTAGFTAAlsVMALERNGLTPEDgPVLVTGATGGVGSlAVAILSKLGYEVVAS-TGKAEE 182
                         170       180       190       200       210
                  ....*....|....*....|....*....|....*....|....*....|....*
gi 52783098   218 HEAIKD-SVTHLFDRnADYVQEVKRISAEGVDIVLDCLCGDNTGKGLSLLKPLGT 271
Cdd:TIGR02823 183 EDYLKElGASEVIDR-EDLSPPGKPLEKERWAGAVDTVGGHTLANVLAQLKYGGA 236
PLN02702 PLN02702
L-idonate 5-dehydrogenase
26-253 1.08e-07

L-idonate 5-dehydrogenase


Pssm-ID: 215378 [Multi-domain]  Cd Length: 364  Bit Score: 53.63  E-value: 1.08e-07
                         10        20        30        40        50        60        70        80
                 ....*....|....*....|....*....|....*....|....*....|....*....|....*....|....*....|
gi 52783098   26 EGGGGDGSHRLGDAQEMRAVVLagfgGLNKLRLFRKAMPEPQDGELKIRVKACGLNFIDL----MVRQGNIDnpPKTPLV 101
Cdd:PLN02702   3 KGGMSSGEGSGVEEENMAAWLV----GVNTLKIQPFKLPPLGPHDVRVRMKAVGICGSDVhylkTMRCADFV--VKEPMV 76
                         90       100       110       120       130       140       150       160
                 ....*....|....*....|....*....|....*....|....*....|....*....|....*....|....*....|
gi 52783098  102 PGFECSGIVEALGDSVKGYEIGDRV------------------------MAFVN----YNAWAEVVCTPVEFVYKIPDDM 153
Cdd:PLN02702  77 IGHECAGIIEEVGSEVKHLVVGDRValepgiscwrcnlckegrynlcpeMKFFAtppvHGSLANQVVHPADLCFKLPENV 156
                        170       180       190       200       210       220       230       240
                 ....*....|....*....|....*....|....*....|....*....|....*....|....*....|....*....|
gi 52783098  154 SFSEAAAF-PMnfvTAYVMLFEVANLREGMSVLVHSAGG-GVGQAVAQLCSTVPNVTVFGTAS---TFKHEAIKDSVTHL 228
Cdd:PLN02702 157 SLEEGAMCePL---SVGVHACRRANIGPETNVLVMGAGPiGLVTMLAARAFGAPRIVIVDVDDerlSVAKQLGADEIVLV 233
                        250       260
                 ....*....|....*....|....*...
gi 52783098  229 FDRNADYVQEVKRISAE---GVDIVLDC 253
Cdd:PLN02702 234 STNIEDVESEVEEIQKAmggGIDVSFDC 261
FDH_like_ADH2 cd08286
formaldehyde dehydrogenase (FDH)-like; This group is related to formaldehyde dehydrogenase ...
42-253 1.08e-06

formaldehyde dehydrogenase (FDH)-like; This group is related to formaldehyde dehydrogenase (FDH), which is a member of the zinc-dependent/medium chain alcohol dehydrogenase family. This family uses NAD(H) as a cofactor in the interconversion of alcohols and aldehydes, or ketones. Another member is identified as a dihydroxyacetone reductase. Like the zinc-dependent alcohol dehydrogenases (ADH) of the medium chain alcohol dehydrogenase/reductase family (MDR), tetrameric FDHs have a catalytic zinc that resides between the catalytic and NAD(H)binding domains and a structural zinc in a lobe of the catalytic domain. Unlike ADH, where NAD(P)(H) acts as a cofactor, NADH in FDH is a tightly bound redox cofactor (similar to nicotinamide proteins). The medium chain alcohol dehydrogenase family (MDR) has a NAD(P)(H)-binding domain in a Rossmann fold of a beta-alpha form. The N-terminal region typically has an all-beta catalytic domain. These proteins typically form dimers (typically higher plants, mammals) or tetramers (yeast, bacteria), and have 2 tightly bound zinc atoms per subunit.


Pssm-ID: 176246 [Multi-domain]  Cd Length: 345  Bit Score: 50.33  E-value: 1.08e-06
                        10        20        30        40        50        60        70        80
                ....*....|....*....|....*....|....*....|....*....|....*....|....*....|....*....|
gi 52783098  42 MRAVVlagFGGLNKLRLFRKAMP---EPQDGELKI-RVKACGlnfIDLMVRQGniDNPPKTP-LVPGFECSGIVEALGDS 116
Cdd:cd08286   1 MKALV---YHGPGKISWEDRPKPtiqEPTDAIVKMlKTTICG---TDLHILKG--DVPTVTPgRILGHEGVGVVEEVGSA 72
                        90       100       110       120       130       140       150       160
                ....*....|....*....|....*....|....*....|....*....|....*....|....*....|....*....|
gi 52783098 117 VKGYEIGDRVM------------------AFVNYNAW----------AEVVCTP-VEF-VYKIPDDMSFSEAAAFPMNFV 166
Cdd:cd08286  73 VTNFKVGDRVLiscisscgtcgycrkglySHCESGGWilgnlidgtqAEYVRIPhADNsLYKLPEGVDEEAAVMLSDILP 152
                       170       180       190       200       210       220       230       240
                ....*....|....*....|....*....|....*....|....*....|....*....|....*....|....*....|
gi 52783098 167 TAYVMLFEVANLREGMSVLVHSAgGGVGQAV---AQLCStvP-NVTVFGTASTFKHEAIKDSVTHLFD-RNADYVQEVKR 241
Cdd:cd08286 153 TGYECGVLNGKVKPGDTVAIVGA-GPVGLAAlltAQLYS--PsKIIMVDLDDNRLEVAKKLGATHTVNsAKGDAIEQVLE 229
                       250
                ....*....|...
gi 52783098 242 ISA-EGVDIVLDC 253
Cdd:cd08286 230 LTDgRGVDVVIEA 242
NADP_ADH cd08285
NADP(H)-dependent alcohol dehydrogenases; This group is predominated by atypical alcohol ...
42-271 1.27e-06

NADP(H)-dependent alcohol dehydrogenases; This group is predominated by atypical alcohol dehydrogenases; they exist as tetramers and exhibit specificity for NADP(H) as a cofactor in the interconversion of alcohols and aldehydes, or ketones. Like other zinc-dependent alcohol dehydrogenases (ADH) of the medium chain alcohol dehydrogenase/reductase family (MDR), tetrameric ADHs have a catalytic zinc that resides between the catalytic and NAD(H)binding domains; however, they do not have and a structural zinc in a lobe of the catalytic domain. The medium chain alcohol dehydrogenase family (MDR) has a NAD(P)(H)-binding domain in a Rossmann fold of a beta-alpha form. The N-terminal region typically has an all-beta catalytic domain. These proteins typically form dimers (typically higher plants, mammals) or tetramers (yeast, bacteria), and have 2 tightly bound zinc atoms per subunit.


Pssm-ID: 176245 [Multi-domain]  Cd Length: 351  Bit Score: 49.93  E-value: 1.27e-06
                        10        20        30        40        50        60        70        80
                ....*....|....*....|....*....|....*....|....*....|....*....|....*....|....*....|
gi 52783098  42 MRAVVlagFGGLNKLRLFRKAMPEPQDGELKIRVKA---CGlnfIDL-MVRQGNIDNPPKtpLVPGFECSGIVEALGDSV 117
Cdd:cd08285   1 MKAFA---MLGIGKVGWIEKPIPVCGPNDAIVRPTAvapCT---SDVhTVWGGAPGERHG--MILGHEAVGVVEEVGSEV 72
                        90       100       110       120       130       140       150       160
                ....*....|....*....|....*....|....*....|....*....|....*....|....*....|....*....|
gi 52783098 118 KGYEIGDRVMAFVNYNAWAEVVC-----------------------TPVEFV---------YKIPDDMSfSEAAAFPMNF 165
Cdd:cd08285  73 KDFKPGDRVIVPAITPDWRSVAAqrgypsqsggmlggwkfsnfkdgVFAEYFhvndadanlAPLPDGLT-DEQAVMLPDM 151
                       170       180       190       200       210       220       230       240
                ....*....|....*....|....*....|....*....|....*....|....*....|....*....|....*....|
gi 52783098 166 VTAYVMLFEVANLREGMSVLVHSAG--GGVGQAVAQLCSTVPNVTVFGTASTFKhEAIKDSVTHLFD-RNADYVQEVKRI 242
Cdd:cd08285 152 MSTGFHGAELANIKLGDTVAVFGIGpvGLMAVAGARLRGAGRIIAVGSRPNRVE-LAKEYGATDIVDyKNGDVVEQILKL 230
                       250       260       270
                ....*....|....*....|....*....|.
gi 52783098 243 SA-EGVDIVLDCLCGDNT-GKGLSLLKPLGT 271
Cdd:cd08285 231 TGgKGVDAVIIAGGGQDTfEQALKVLKPGGT 261
PRK10083 PRK10083
putative oxidoreductase; Provisional
54-210 2.64e-06

putative oxidoreductase; Provisional


Pssm-ID: 182229 [Multi-domain]  Cd Length: 339  Bit Score: 48.97  E-value: 2.64e-06
                         10        20        30        40        50        60        70        80
                 ....*....|....*....|....*....|....*....|....*....|....*....|....*....|....*....|
gi 52783098   54 NKLRLFRKAMPEPQDGELKIRVKACGLNFIDLMVRQGNidNP-PKTPLVPGFECSGIVEALGDSVKGYEIGDR------- 125
Cdd:PRK10083  10 NSLAIEERPIPQPAAGEVRVKVKLAGICGSDSHIYRGH--NPfAKYPRVIGHEFFGVIDAVGEGVDAARIGERvavdpvi 87
                         90       100       110       120       130       140       150       160
                 ....*....|....*....|....*....|....*....|....*....|....*....|....*....|....*....|
gi 52783098  126 --------------------VMAFVNYNAWAEVVCTPVEFVYKIPDDMSFSEAAAFPMNFVTAYVMlfEVANLREGMSVL 185
Cdd:PRK10083  88 scghcypcsigkpnvctslvVLGVHRDGGFSEYAVVPAKNAHRIPDAIADQYAVMVEPFTIAANVT--GRTGPTEQDVAL 165
                        170       180
                 ....*....|....*....|....*
gi 52783098  186 VHSAgGGVGQAVAQLCSTVPNVTVF 210
Cdd:PRK10083 166 IYGA-GPVGLTIVQVLKGVYNVKAV 189
Zn_ADH8 cd08262
Alcohol dehydrogenases of the MDR family; The medium chain dehydrogenases/reductase (MDR) ...
42-198 3.55e-06

Alcohol dehydrogenases of the MDR family; The medium chain dehydrogenases/reductase (MDR)/zinc-dependent alcohol dehydrogenase-like family, which contains the zinc-dependent alcohol dehydrogenase (ADH-Zn) and related proteins, is a diverse group of proteins related to the first identified member, class I mammalian ADH. MDRs display a broad range of activities and are distinguished from the smaller short chain dehydrogenases (~ 250 amino acids vs. the ~ 350 amino acids of the MDR). The MDR proteins have 2 domains: a C-terminal NAD(P)-binding Rossmann fold domain of a beta-alpha form and an N-terminal catalytic domain with distant homology to GroES. The MDR group contains a host of activities, including the founding alcohol dehydrogenase (ADH), quinone reductase, sorbitol dehydrogenase, formaldehyde dehydrogenase, butanediol DH, ketose reductase, cinnamyl reductase, and numerous others. The zinc-dependent alcohol dehydrogenases (ADHs) catalyze the NAD(P)(H)-dependent interconversion of alcohols to aldehydes or ketones. Active site zinc has a catalytic role, while structural zinc aids in stability. ADH-like proteins typically form dimers (typically higher plants, mammals) or tetramers (yeast, bacteria), and generally have 2 tightly bound zinc atoms per subunit. The active site zinc is coordinated by a histidine, two cysteines, and a water molecule. The second zinc seems to play a structural role, affects subunit interactions, and is typically coordinated by 4 cysteines.


Pssm-ID: 176223 [Multi-domain]  Cd Length: 341  Bit Score: 48.46  E-value: 3.55e-06
                        10        20        30        40        50        60        70        80
                ....*....|....*....|....*....|....*....|....*....|....*....|....*....|....*....|
gi 52783098  42 MRAVVLAGfgglNKLRLFRKAMPEPQDGELKIRVKACG-----LNFIDLMVRQGNIDNPPKT-----PLVPGFE-CSGIV 110
Cdd:cd08262   1 MRAAVFRD----GPLVVRDVPDPEPGPGQVLVKVLACGicgsdLHATAHPEAMVDDAGGPSLmdlgaDIVLGHEfCGEVV 76
                        90       100       110       120       130       140       150       160
                ....*....|....*....|....*....|....*....|....*....|....*....|....*....|....*....|
gi 52783098 111 EALGDSVKGYEIGDRV--MAFVN---------------YNAWAEVVCTPVEFVYKIPDDMSfSEAAAF--PMNfvtayVM 171
Cdd:cd08262  77 DYGPGTERKLKVGTRVtsLPLLLcgqgascgiglspeaPGGYAEYMLLSEALLLRVPDGLS-MEDAALtePLA-----VG 150
                       170       180       190
                ....*....|....*....|....*....|
gi 52783098 172 LFEV--ANLREGMSVLVhsAGGG-VGQAVA 198
Cdd:cd08262 151 LHAVrrARLTPGEVALV--IGCGpIGLAVI 178
PLN03154 PLN03154
putative allyl alcohol dehydrogenase; Provisional
99-257 3.61e-06

putative allyl alcohol dehydrogenase; Provisional


Pssm-ID: 215606 [Multi-domain]  Cd Length: 348  Bit Score: 48.68  E-value: 3.61e-06
                         10        20        30        40        50        60        70        80
                 ....*....|....*....|....*....|....*....|....*....|....*....|....*....|....*....|
gi 52783098   99 PLVPG--FECSGIVEALGDSVKGYEIGDRVMAFVNYNAWAEVVCTPVEF-VYKIPDDMSFS-EAAAFPMNFVTAYVMLFE 174
Cdd:PLN03154  73 PFVPGqrIEGFGVSKVVDSDDPNFKPGDLISGITGWEEYSLIRSSDNQLrKIQLQDDIPLSyHLGLLGMAGFTAYAGFYE 152
                         90       100       110       120       130       140       150       160
                 ....*....|....*....|....*....|....*....|....*....|....*....|....*....|....*....|
gi 52783098  175 VANLREGMSVLVHSAGGGVGQAVAQLCSTVPNVTVFGTASTFKHEAIKDSVThlFDRNADYVQE------VKRISAEGVD 248
Cdd:PLN03154 153 VCSPKKGDSVFVSAASGAVGQLVGQLAKLHGCYVVGSAGSSQKVDLLKNKLG--FDEAFNYKEEpdldaaLKRYFPEGID 230

                 ....*....
gi 52783098  249 IVLDCLCGD 257
Cdd:PLN03154 231 IYFDNVGGD 239
leukotriene_B4_DH_like cd08294
13-PGR is a bifunctional enzyme with delta-13 15-prostaglandin reductase and leukotriene B4 12 ...
56-270 3.92e-06

13-PGR is a bifunctional enzyme with delta-13 15-prostaglandin reductase and leukotriene B4 12 hydroxydehydrogenase activity; Prostaglandins and related eicosanoids are metabolized by the oxidation of the 15(S)-hydroxyl group of the NAD+-dependent (type I 15-PGDH) 15-prostaglandin dehydrogenase (15-PGDH) followed by reduction by NADPH/NADH-dependent (type II 15-PGDH) delta-13 15-prostaglandin reductase (13-PGR) to 15-keto- 13,14,-dihydroprostaglandins. 13-PGR is a bifunctional enzyme, since it also has leukotriene B(4) 12-hydroxydehydrogenase activity. These 15-PGDH and related enzymes are members of the medium chain dehydrogenase/reductase family. The medium chain dehydrogenases/reductase (MDR)/zinc-dependent alcohol dehydrogenase-like family, which contains the zinc-dependent alcohol dehydrogenase (ADH-Zn) and related proteins, is a diverse group of proteins related to the first identified member, class I mammalian ADH. MDRs display a broad range of activities and are distinguished from the smaller short chain dehydrogenases (~ 250 amino acids vs. the ~ 350 amino acids of the MDR). The MDR proteins have 2 domains: a C-terminal NAD(P) binding-Rossmann fold domain of a beta-alpha form and an N-terminal catalytic domain with distant homology to GroES.


Pssm-ID: 176254 [Multi-domain]  Cd Length: 329  Bit Score: 48.41  E-value: 3.92e-06
                        10        20        30        40        50        60        70        80
                ....*....|....*....|....*....|....*....|....*....|....*....|....*....|....*....|
gi 52783098  56 LRLFRKAMPEPQDGElkIRVKACGLNfIDLMVRQGNIDNPPKTPlVPGFECSGIVEALGDSvkgYEIGDRVMAFVNYNAW 135
Cdd:cd08294  21 FELVEEELPPLKDGE--VLCEALFLS-VDPYMRPYSKRLNEGDT-MIGTQVAKVIESKNSK---FPVGTIVVASFGWRTH 93
                        90       100       110       120       130       140       150       160
                ....*....|....*....|....*....|....*....|....*....|....*....|....*....|....*....|
gi 52783098 136 AEVVCTPVEFVYKIP----DDMSFSEA-AAFPMNFVTAYVMLFEVANLREGMSVLVHSAGGGVGQAVAQL-----CStvp 205
Cdd:cd08294  94 TVSDGKDQPDLYKLPadlpDDLPPSLAlGVLGMPGLTAYFGLLEICKPKAGETVVVNGAAGAVGSLVGQIakikgCK--- 170
                       170       180       190       200       210       220       230
                ....*....|....*....|....*....|....*....|....*....|....*....|....*....|....
gi 52783098 206 nvtVFGTASTfkheaiKDSVTHLFDRNADYV---------QEVKRISAEGVDIVLDCLCGDNTGKGLSLLKPLG 270
Cdd:cd08294 171 ---VIGCAGS------DDKVAWLKELGFDAVfnyktvsleEALKEAAPDGIDCYFDNVGGEFSSTVLSHMNDFG 235
PLN02586 PLN02586
probable cinnamyl alcohol dehydrogenase
65-276 4.04e-06

probable cinnamyl alcohol dehydrogenase


Pssm-ID: 166227 [Multi-domain]  Cd Length: 360  Bit Score: 48.72  E-value: 4.04e-06
                         10        20        30        40        50        60        70        80
                 ....*....|....*....|....*....|....*....|....*....|....*....|....*....|....*....|
gi 52783098   65 EPQDGELKIRVKACGLNFIDLMVRQgNIDNPPKTPLVPGFECSGIVEALGDSVKGYEIGDRV------------------ 126
Cdd:PLN02586  34 ENGDEDVTVKILYCGVCHSDLHTIK-NEWGFTRYPIVPGHEIVGIVTKLGKNVKKFKEGDRVgvgvivgsckscescdqd 112
                         90       100       110       120       130       140       150       160
                 ....*....|....*....|....*....|....*....|....*....|....*....|....*....|....*....|
gi 52783098  127 -------MAFV----------NYNAWAEVVCTPVEFVYKIPDDMSFSEAAAFPMNFVTAYVMLfEVANLREGMSVLVHSA 189
Cdd:PLN02586 113 lenycpkMIFTynsighdgtkNYGGYSDMIVVDQHFVLRFPDNLPLDAGAPLLCAGITVYSPM-KYYGMTEPGKHLGVAG 191
                        170       180       190       200       210       220       230       240
                 ....*....|....*....|....*....|....*....|....*....|....*....|....*....|....*....|
gi 52783098  190 GGGVGQAVAQLCSTVP-NVTVFGTASTFKHEAIKDSVTHLFDRNADyVQEVKriSAEG-VDIVLDCLCGDNT-GKGLSLL 266
Cdd:PLN02586 192 LGGLGHVAVKIGKAFGlKVTVISSSSNKEDEAINRLGADSFLVSTD-PEKMK--AAIGtMDYIIDTVSAVHAlGPLLGLL 268
                        250
                 ....*....|
gi 52783098  267 KPLGTYILYG 276
Cdd:PLN02586 269 KVNGKLITLG 278
idonate-5-DH cd08232
L-idonate 5-dehydrogenase; L-idonate 5-dehydrogenase (L-ido 5-DH ) catalyzes the conversion of ...
56-126 4.51e-06

L-idonate 5-dehydrogenase; L-idonate 5-dehydrogenase (L-ido 5-DH ) catalyzes the conversion of L-lodonate to 5-ketogluconate in the metabolism of L-Idonate to 6-P-gluconate. In E. coli, this GntII pathway is a subsidiary pathway to the canonical GntI system, which also phosphorylates and transports gluconate. L-ido 5-DH is found in an operon with a regulator indR, transporter idnT, 5-keto-D-gluconate 5-reductase, and Gnt kinase. L-ido 5-DH is a zinc-dependent alcohol dehydrogenase-like protein. The alcohol dehydrogenase ADH-like family of proteins is a diverse group of proteins related to the first identified member, class I mammalian ADH. This group is also called the medium chain dehydrogenases/reductase family (MDR) which displays a broad range of activities and are distinguished from the smaller short chain dehydrogenases(~ 250 amino acids vs. the ~ 350 amino acids of the MDR). The MDR proteins have 2 domains: a C-terminal NAD(P) binding-Rossmann fold domain of a beta-alpha form and an N-terminal GroES-like catalytic domain. The MDR group contains a host of activities, including the founding alcohol dehydrogenase (ADH), quinone reductase, sorbitol dehydrogenase, formaldehyde dehydrogenase, butanediol DH, ketose reductase, cinnamyl reductase, and numerous others. The zinc-dependent alcohol dehydrogenases (ADHs) catalyze the NAD(P)(H)-dependent interconversion of alcohols to aldehydes or ketones. ADH-like proteins typically form dimers (typically higher plants, mammals) or tetramers (yeast, bacteria), and generally have 2 tightly bound zinc atoms per subunit. The active site zinc is coordinated by a histidine, two cysteines, and a water molecule. The second zinc seems to play a structural role, affects subunit interactions, and is typically coordinated by 4 cysteines.


Pssm-ID: 176194 [Multi-domain]  Cd Length: 339  Bit Score: 48.39  E-value: 4.51e-06
                        10        20        30        40        50        60        70
                ....*....|....*....|....*....|....*....|....*....|....*....|....*....|...
gi 52783098  56 LRLFRKAMPEPQDGELKIRVKACGLNFIDLMVRQ--GNIDNPPKTPLVPGFECSGIVEALGDSVKGYEIGDRV 126
Cdd:cd08232   9 LRVEERPAPEPGPGEVRVRVAAGGICGSDLHYYQhgGFGTVRLREPMVLGHEVSGVVEAVGPGVTGLAPGQRV 81
PRK09422 PRK09422
ethanol-active dehydrogenase/acetaldehyde-active reductase; Provisional
42-191 1.15e-05

ethanol-active dehydrogenase/acetaldehyde-active reductase; Provisional


Pssm-ID: 181842 [Multi-domain]  Cd Length: 338  Bit Score: 46.95  E-value: 1.15e-05
                         10        20        30        40        50        60        70        80
                 ....*....|....*....|....*....|....*....|....*....|....*....|....*....|....*....|
gi 52783098   42 MRAVVLAGfgGLNKLRLFRKAMPEPQDGELKIRVKACGLNFIDLMVRQGNIDNPPKTPLvpGFECSGIVEALGDSVKGYE 121
Cdd:PRK09422   1 MKAAVVNK--DHTGDVVVEKTLRPLKHGEALVKMEYCGVCHTDLHVANGDFGDKTGRIL--GHEGIGIVKEVGPGVTSLK 76
                         90       100       110       120       130       140       150       160
                 ....*....|....*....|....*....|....*....|....*....|....*....|....*....|....*....|
gi 52783098  122 IGDRVMAfvnynAW---------------------------------AEVVCTPVEFVYKIPDDMSFSEAAAFPMNFVTA 168
Cdd:PRK09422  77 VGDRVSI-----AWffegcghceycttgretlcrsvknagytvdggmAEQCIVTADYAVKVPEGLDPAQASSITCAGVTT 151
                        170       180
                 ....*....|....*....|...
gi 52783098  169 YVMLfEVANLREGMSVLVHSAGG 191
Cdd:PRK09422 152 YKAI-KVSGIKPGQWIAIYGAGG 173
liver_alcohol_DH_like cd08277
Liver alcohol dehydrogenase; NAD(P)(H)-dependent oxidoreductases are the major enzymes in the ...
66-129 1.72e-05

Liver alcohol dehydrogenase; NAD(P)(H)-dependent oxidoreductases are the major enzymes in the interconversion of alcohols and aldehydes, or ketones. Alcohol dehydrogenase in the liver converts ethanol and NAD+ to acetaldehyde and NADH, while in yeast and some other microorganisms ADH catalyzes the conversion acetaldehyde to ethanol in alcoholic fermentation. There are 7 vertebrate ADH 7 classes, 6 of which have been identified in humans. Class III, glutathione-dependent formaldehyde dehydrogenase, has been identified as the primordial form and exists in diverse species, including plants, micro-organisms, vertebrates, and invertebrates. Class I, typified by liver dehydrogenase, is an evolving form. Gene duplication and functional specialization of ADH into ADH classes and subclasses created numerous forms in vertebrates. For example, the A, B and C (formerly alpha, beta, gamma) human class I subunits have high overall structural similarity, but differ in the substrate binding pocket and therefore in substrate specificity. In human ADH catalysis, the zinc ion helps coordinate the alcohol, followed by deprotonation of a histidine (His-51), the ribose of NAD, a serine (Ser-48) , then the alcohol, which allows the transfer of a hydride to NAD+, creating NADH and a zinc-bound aldehyde or ketone. In yeast and some bacteria, the active site zinc binds an aldehyde, polarizing it, and leading to the reverse reaction. ADH is a member of the medium chain alcohol dehydrogenase family (MDR), which has a NAD(P)(H)-binding domain in a Rossmann fold of an beta-alpha form. The NAD(H)-binding region is comprised of 2 structurally similar halves, each of which contacts a mononucleotide. A GxGxxG motif after the first mononucleotide contact half allows the close contact of the coenzyme with the ADH backbone. The N-terminal catalytic domain has a distant homology to GroES. These proteins typically form dimers (typically higher plants, mammals) or tetramers (yeast, bacteria), and have 2 tightly bound zinc atoms per subunit, a catalytic zinc at the active site and a structural zinc in a lobe of the catalytic domain. NAD(H) binding occurs in the cleft between the catalytic and coenzyme-binding domains at the active site, and coenzyme binding induces a conformational closing of this cleft. Coenzyme binding typically precedes and contributes to substrate binding.


Pssm-ID: 176238 [Multi-domain]  Cd Length: 365  Bit Score: 46.56  E-value: 1.72e-05
                        10        20        30        40        50        60
                ....*....|....*....|....*....|....*....|....*....|....*....|....
gi 52783098  66 PQDGELKIRVKACGLNFIDLMVRQGNIdnPPKTPLVPGFECSGIVEALGDSVKGYEIGDRVMAF 129
Cdd:cd08277  25 PKANEVRIKMLATSVCHTDILAIEGFK--ATLFPVILGHEGAGIVESVGEGVTNLKPGDKVIPL 86
ADH_zinc_N pfam00107
Zinc-binding dehydrogenase;
192-276 6.04e-05

Zinc-binding dehydrogenase;


Pssm-ID: 395057 [Multi-domain]  Cd Length: 129  Bit Score: 42.59  E-value: 6.04e-05
                          10        20        30        40        50        60        70        80
                  ....*....|....*....|....*....|....*....|....*....|....*....|....*....|....*....|
gi 52783098   192 GVGQAVAQLCSTVpNVTVFGTAST-FKHEAIKDS-VTHLFD-RNADYVQEVKRI-SAEGVDIVLDCLCGDNTGK-GLSLL 266
Cdd:pfam00107   1 GVGLAAIQLAKAA-GAKVIAVDGSeEKLELAKELgADHVINpKETDLVEEIKELtGGKGVDVVFDCVGSPATLEqALKLL 79
                          90
                  ....*....|
gi 52783098   267 KPLGTYILYG 276
Cdd:pfam00107  80 RPGGRVVVVG 89
sorbose_phosphate_red cd08238
L-sorbose-1-phosphate reductase; L-sorbose-1-phosphate reductase, a member of the MDR family, ...
42-126 3.42e-04

L-sorbose-1-phosphate reductase; L-sorbose-1-phosphate reductase, a member of the MDR family, catalyzes the NADPH-dependent conversion of l-sorbose 1-phosphate to d-glucitol 6-phosphate in the metabolism of L-sorbose to (also converts d-fructose 1-phosphate to d-mannitol 6-phosphate). The medium chain dehydrogenases/reductase (MDR)/zinc-dependent alcohol dehydrogenase-like family, which contains the zinc-dependent alcohol dehydrogenase (ADH-Zn) and related proteins, is a diverse group of proteins related to the first identified member, class I mammalian ADH. MDRs display a broad range of activities and are distinguished from the smaller short chain dehydrogenases (~ 250 amino acids vs. the ~ 350 amino acids of the MDR). The MDR proteins have 2 domains: a C-terminal NAD(P) binding-Rossmann fold domain of an beta-alpha form and an N-terminal catalytic domain with distant homology to GroES. The MDR group contains a host of activities, including the founding alcohol dehydrogenase (ADH), quinone reductase, sorbitol dehydrogenase, formaldehyde dehydrogenase, butanediol DH, ketose reductase, cinnamyl reductase, and numerous others. The zinc-dependent alcohol dehydrogenases (ADHs) catalyze the NAD(P)(H)-dependent interconversion of alcohols to aldehydes or ketones. Active site zinc has a catalytic role, while structural zinc aids in stability.


Pssm-ID: 176200 [Multi-domain]  Cd Length: 410  Bit Score: 42.43  E-value: 3.42e-04
                        10        20        30        40        50        60        70        80
                ....*....|....*....|....*....|....*....|....*....|....*....|....*....|....*....|
gi 52783098  42 MRAVVLAGFGGlNKLRLFRKAMPEPQDGELKIRVKACGLNFIDL-MVRQGN-----IDNPPKTPLVPGFECSGIVEALGD 115
Cdd:cd08238   1 MKTKAWRMYGK-GDLRLEKFELPEIADDEILVRVISDSLCFSTWkLALQGSdhkkvPNDLAKEPVILGHEFAGTILKVGK 79
                        90
                ....*....|..
gi 52783098 116 SVKG-YEIGDRV 126
Cdd:cd08238  80 KWQGkYKPGQRF 91
glucose_DH cd08230
Glucose dehydrogenase; Glucose dehydrogenase (GlcDH), a member of the medium chain ...
42-130 4.03e-04

Glucose dehydrogenase; Glucose dehydrogenase (GlcDH), a member of the medium chain dehydrogenase/zinc-dependent alcohol dehydrogenase-like family, catalyzes the NADP(+)-dependent oxidation of glucose to gluconate, the first step in the Entner-Doudoroff pathway, an alternative to or substitute for glycolysis or the pentose phosphate pathway. The medium chain dehydrogenases/reductase (MDR)/zinc-dependent alcohol dehydrogenase-like family, which contains the zinc-dependent alcohol dehydrogenase (ADH-Zn) and related proteins, is a diverse group of proteins related to the first identified member, class I mammalian ADH. MDRs display a broad range of activities and are distinguished from the smaller short chain dehydrogenases (~ 250 amino acids vs. the ~ 350 amino acids of the MDR). The MDR proteins have 2 domains: a C-terminal NAD(P) binding-Rossman fold domain of a beta-alpha form and an N-terminal catalytic domain with distant homology to GroES. The MDR group contains a host of activities, including the founding alcohol dehydrogenase (ADH), quinone reductase, sorbitol dehydrogenase, formaldehyde dehydrogenase, butanediol DH, ketose reductase, cinnamyl reductase, and numerous others. The zinc-dependent alcohol dehydrogenases (ADHs) catalyze the NAD(P)(H)-dependent interconversion of alcohols to aldehydes or ketones. Active site zinc has a catalytic role, while structural zinc aids in stability.


Pssm-ID: 176192 [Multi-domain]  Cd Length: 355  Bit Score: 42.21  E-value: 4.03e-04
                        10        20        30        40        50        60        70        80
                ....*....|....*....|....*....|....*....|....*....|....*....|....*....|....*....|
gi 52783098  42 MRAV-VLAGFGGLnklRLFRKAMPEPQDGELKIRVKACGLNFIDLMVRQGNIDNPP--KTPLVPGFECSGIVEALGDSvK 118
Cdd:cd08230   1 MKAIaVKPGKPGV---RVVDIPEPEPTPGEVLVRTLEVGVCGTDREIVAGEYGTAPpgEDFLVLGHEALGVVEEVGDG-S 76
                        90
                ....*....|..
gi 52783098 119 GYEIGDRVMAFV 130
Cdd:cd08230  77 GLSPGDLVVPTV 88
FDH_like_1 cd08283
Glutathione-dependent formaldehyde dehydrogenase related proteins, child 1; Members identified ...
42-201 1.16e-03

Glutathione-dependent formaldehyde dehydrogenase related proteins, child 1; Members identified as glutathione-dependent formaldehyde dehydrogenase(FDH), a member of the zinc-dependent/medium chain alcohol dehydrogenase family. FDH converts formaldehyde and NAD(P) to formate and NAD(P)H. The initial step in this process the spontaneous formation of a S-(hydroxymethyl)glutathione adduct from formaldehyde and glutathione, followed by FDH-mediated oxidation (and detoxification) of the adduct to S-formylglutathione. MDH family uses NAD(H) as a cofactor in the interconversion of alcohols and aldehydes, or ketones. Like many zinc-dependent alcohol dehydrogenases (ADH) of the medium chain alcohol dehydrogenase/reductase family (MDR), these FDHs form dimers, with 4 zinc ions per dimer. The medium chain alcohol dehydrogenase family (MDR) has a NAD(P)(H)-binding domain in a Rossmann fold of a beta-alpha form. The N-terminal region typically has an all-beta catalytic domain. These proteins typically form dimers (typically higher plants, mammals) or tetramers (yeast, bacteria), and have 2 tightly bound zinc atoms per subunit.


Pssm-ID: 176243 [Multi-domain]  Cd Length: 386  Bit Score: 40.98  E-value: 1.16e-03
                        10        20        30        40        50        60        70        80
                ....*....|....*....|....*....|....*....|....*....|....*....|....*....|....*....|
gi 52783098  42 MRAVVlagFGGLNKLRLFRKAMP---EPQDGELKIRVKA-CGlnfIDLMVRQGNIDNPPKtPLVPGFECSGIVEALGDSV 117
Cdd:cd08283   1 MKALV---WHGKGDVRVEEVPDPkieDPTDAIVRVTATAiCG---SDLHLYHGYIPGMKK-GDILGHEFMGVVEEVGPEV 73
                        90       100       110       120       130       140       150       160
                ....*....|....*....|....*....|....*....|....*....|....*....|....*....|....*....|
gi 52783098 118 KGYEIGDRVMA-FV--------------------NYNAWAEVVC-TPV------------------EFV---------YK 148
Cdd:cd08283  74 RNLKVGDRVVVpFTiacgecfyckrglysqcdntNPSAEMAKLYgHAGagifgyshltggyaggqaEYVrvpfadvgpFK 153
                       170       180       190       200       210
                ....*....|....*....|....*....|....*....|....*....|....*..
gi 52783098 149 IPDDMSFSEAA----AFPmnfvTAYvMLFEVANLREGMSVLVHSAgGGVGQAVAQLC 201
Cdd:cd08283 154 IPDDLSDEKALflsdILP----TGY-HAAELAEVKPGDTVAVWGC-GPVGLFAARSA 204
B4_12hDH TIGR02825
leukotriene B4 12-hydroxydehydrogenase/15-oxo-prostaglandin 13-reductase; Leukotriene B4 ...
150-280 1.82e-03

leukotriene B4 12-hydroxydehydrogenase/15-oxo-prostaglandin 13-reductase; Leukotriene B4 12-hydroxydehydrogenase is an NADP-dependent enzyme of arachidonic acid metabolism, responsible for converting leukotriene B4 to the much less active metabolite 12-oxo-leukotriene B4. The BRENDA database lists leukotriene B4 12-hydroxydehydrogenase as one of the synonyms of 2-alkenal reductase (EC 1.3.1.74), while 1.3.1.48 is 15-oxoprostaglandin 13-reductase.


Pssm-ID: 131872 [Multi-domain]  Cd Length: 325  Bit Score: 39.98  E-value: 1.82e-03
                          10        20        30        40        50        60        70        80
                  ....*....|....*....|....*....|....*....|....*....|....*....|....*....|....*....|
gi 52783098   150 PDDMSFSEA-AAFPMNFVTAYVMLFEVANLREGMSVLVHSAGGGVGQAVAQLcSTVPNVTVFGTASTFKHEAIKDSVTHL 228
Cdd:TIGR02825 107 PDTLPLSLAlGTVGMPGLTAYFGLLEICGVKGGETVMVNAAAGAVGSVVGQI-AKLKGCKVVGAAGSDEKVAYLKKLGFD 185
                          90       100       110       120       130
                  ....*....|....*....|....*....|....*....|....*....|....*.
gi 52783098   229 FDRNADYVQE----VKRISAEGVDIVLDCLCGDNTGKGLSLLKPLGTYILYGSSNM 280
Cdd:TIGR02825 186 VAFNYKTVKSleetLKKASPDGYDCYFDNVGGEFSNTVIGQMKKFGRIAICGAIST 241
PFDH_like cd08282
Pseudomonas putida aldehyde-dismutating formaldehyde dehydrogenase (PFDH); Formaldehyde ...
42-126 6.85e-03

Pseudomonas putida aldehyde-dismutating formaldehyde dehydrogenase (PFDH); Formaldehyde dehydrogenase (FDH) is a member of the zinc-dependent/medium chain alcohol dehydrogenase family. Unlike typical FDH, Pseudomonas putida aldehyde-dismutating FDH (PFDH) is glutathione-independent. PFDH converts 2 molecules of aldehydes to corresponding carboxylic acid and alcohol. MDH family uses NAD(H) as a cofactor in the interconversion of alcohols and aldehydes, or ketones. Like the zinc-dependent alcohol dehydrogenases (ADH) of the medium chain alcohol dehydrogenase/reductase family (MDR), these tetrameric FDHs have a catalytic zinc that resides between the catalytic and NAD(H)binding domains and a structural zinc in a lobe of the catalytic domain. Unlike ADH, where NAD(P)(H) acts as a cofactor, NADH in FDH is a tightly bound redox cofactor (similar to nicotinamide proteins). The medium chain alcohol dehydrogenase family (MDR) has a NAD(P)(H)-binding domain in a Rossmann fold of an beta-alpha form. The N-terminal region typically has an all-beta catalytic domain. These proteins typically form dimers (typically higher plants, mammals) or tetramers (yeast, bacteria), and have 2 tightly bound zinc atoms per subunit.


Pssm-ID: 176242 [Multi-domain]  Cd Length: 375  Bit Score: 38.34  E-value: 6.85e-03
                        10        20        30        40        50        60        70        80
                ....*....|....*....|....*....|....*....|....*....|....*....|....*....|....*....|
gi 52783098  42 MRAVVlagFGGLNKLRLFRKAMPE---PQDGELKIRVKA-CGlnfIDL-MVRQgniDNPPKTPLVPGFECSGIVEALGDS 116
Cdd:cd08282   1 MKAVV---YGGPGNVAVEDVPDPKiehPTDAIVRITTTAiCG---SDLhMYRG---RTGAEPGLVLGHEAMGEVEEVGSA 71
                        90
                ....*....|
gi 52783098 117 VKGYEIGDRV 126
Cdd:cd08282  72 VESLKVGDRV 81
FDH_like_ADH3 cd08287
formaldehyde dehydrogenase (FDH)-like; This group contains proteins identified as alcohol ...
42-128 7.00e-03

formaldehyde dehydrogenase (FDH)-like; This group contains proteins identified as alcohol dehydrogenases and glutathione-dependant formaldehyde dehydrogenases (FDH) of the zinc-dependent/medium chain alcohol dehydrogenase family. The MDR family uses NAD(H) as a cofactor in the interconversion of alcohols and aldehydes, or ketones. FDH converts formaldehyde and NAD to formate and NADH. The initial step in this process the spontaneous formation of a S-(hydroxymethyl)glutathione adduct from formaldehyde and glutathione, followed by FDH-mediated oxidation (and detoxification) of the adduct to S-formylglutathione. The medium chain alcohol dehydrogenase family (MDR) has a NAD(P)(H)-binding domain in a Rossmann fold of a beta-alpha form. The N-terminal region typically has an all-beta catalytic domain. These proteins typically form dimers (typically higher plants, mammals) or tetramers (yeast, bacteria), and have 2 tightly bound zinc atoms per subunit.


Pssm-ID: 176247 [Multi-domain]  Cd Length: 345  Bit Score: 38.44  E-value: 7.00e-03
                        10        20        30        40        50        60        70        80
                ....*....|....*....|....*....|....*....|....*....|....*....|....*....|....*....|
gi 52783098  42 MRAVVlagFGGLNKLRLfrKAMPEP---QDGELKIRVKA---CGlnfIDLMVRQGniDNPPKTPLVPGFECSGIVEALGD 115
Cdd:cd08287   1 MRATV---IHGPGDIRV--EEVPDPvieEPTDAVIRVVAtcvCG---SDLWPYRG--VSPTRAPAPIGHEFVGVVEEVGS 70
                        90
                ....*....|...
gi 52783098 116 SVKGYEIGDRVMA 128
Cdd:cd08287  71 EVTSVKPGDFVIA 83
alcohol_DH_class_III cd08300
class III alcohol dehydrogenases; Members identified as glutathione-dependent formaldehyde ...
66-128 9.49e-03

class III alcohol dehydrogenases; Members identified as glutathione-dependent formaldehyde dehydrogenase(FDH), a member of the zinc dependent/medium chain alcohol dehydrogenase family. FDH converts formaldehyde and NAD(P) to formate and NAD(P)H. The initial step in this process the spontaneous formation of a S-(hydroxymethyl)glutathione adduct from formaldehyde and glutathione, followed by FDH-mediated oxidation (and detoxification) of the adduct to S-formylglutathione. MDH family uses NAD(H) as a cofactor in the interconversion of alcohols and aldehydes or ketones. Like many zinc-dependent alcohol dehydrogenases (ADH) of the medium chain alcohol dehydrogenase/reductase family (MDR), these FDHs form dimers, with 4 zinc ions per dimer. The medium chain alcohol dehydrogenase family (MDR) have a NAD(P)(H)-binding domain in a Rossmann fold of a beta-alpha form. The N-terminal region typically has an all-beta catalytic domain. These proteins typically form dimers (typically higher plants, mammals) or tetramers (yeast, bacteria), and have 2 tightly bound zinc atoms per subunit. Alcohol dehydrogenase in the liver converts ethanol and NAD+ to acetaldehyde and NADH, while in yeast and some other microorganisms ADH catalyzes the conversion acetaldehyde to ethanol in alcoholic fermentation. ADH is a member of the medium chain alcohol dehydrogenase family (MDR), which have a NAD(P)(H)-binding domain in a Rossmann fold of a beta-alpha form. The NAD(H)-binding region is comprised of 2 structurally similar halves, each of which contacts a mononucleotide. A GxGxxG motif after the first mononucleotide contact half allows the close contact of the coenzyme with the ADH backbone. The N-terminal catalytic domain has a distant homology to GroES. These proteins typically form dimers (typically higher plants, mammals) or tetramers (yeast, bacteria), and have 2 tightly bound zinc atoms per subunit, a catalytic zinc at the active site and a structural zinc in a lobe of the catalytic domain. NAD(H) binding occurs in the cleft between the catalytic and coenzyme-binding domains at the active site, and coenzyme binding induces a conformational closing of this cleft. Coenzyme binding typically precedes and contributes to substrate binding.


Pssm-ID: 176260 [Multi-domain]  Cd Length: 368  Bit Score: 37.98  E-value: 9.49e-03
                        10        20        30        40        50        60
                ....*....|....*....|....*....|....*....|....*....|....*....|...
gi 52783098  66 PQDGELKIRVKACGLNFIDLMVRQGNiDNPPKTPLVPGFECSGIVEALGDSVKGYEIGDRVMA 128
Cdd:cd08300  25 PKAGEVRIKILATGVCHTDAYTLSGA-DPEGLFPVILGHEGAGIVESVGEGVTSVKPGDHVIP 86
 
Blast search parameters
Data Source: Precalculated data, version = cdd.v.3.21
Preset Options:Database: CDSEARCH/cdd   Low complexity filter: no  Composition Based Adjustment: yes   E-value threshold: 0.01

References:

  • Wang J et al. (2023), "The conserved domain database in 2023", Nucleic Acids Res.51(D)384-8.
  • Lu S et al. (2020), "The conserved domain database in 2020", Nucleic Acids Res.48(D)265-8.
  • Marchler-Bauer A et al. (2017), "CDD/SPARCLE: functional classification of proteins via subfamily domain architectures.", Nucleic Acids Res.45(D)200-3.
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