Conserved Protein Domain Family
3b-HSD_like_1_SDR_e

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cd09812: 3b-HSD_like_1_SDR_e 
3beta-hydroxysteroid dehydrogenase (3b-HSD)-like, subgroup1, extended (e) SDRs
An uncharacterized subgroup of the 3b-HSD-like extended-SDR family. Proteins in this subgroup have the characteristic active site tetrad and NAD(P)-binding motif of extended-SDRs. 3 beta-HSD catalyzes the oxidative conversion of delta 5-3 beta-hydroxysteroids to the delta 4-3-keto configuration; this activity is essential for the biosynthesis of all classes of hormonal steroids. Extended SDRs are distinct from classical SDRs. In addition to the Rossmann fold (alpha/beta folding pattern with a central beta-sheet) core region typical of all SDRs, extended SDRs have a less conserved C-terminal extension of approximately 100 amino acids. Extended SDRs are a diverse collection of proteins, and include isomerases, epimerases, oxidoreductases, and lyases; they typically have a TGXXGXXG cofactor binding motif. SDRs are a functionally diverse family of oxidoreductases that have a single domain with a structurally conserved Rossmann fold, an NAD(P)(H)-binding region, and a structurally diverse C-terminal region. Sequence identity between different SDR enzymes is typically in the 15-30% range; they catalyze a wide range of activities including the metabolism of steroids, cofactors, carbohydrates, lipids, aromatic compounds, and amino acids, and act in redox sensing. Classical SDRs have an TGXXX[AG]XG cofactor binding motif and a YXXXK active site motif, with the Tyr residue of the active site motif serving as a critical catalytic residue (Tyr-151, human 15-hydroxyprostaglandin dehydrogenase numbering). In addition to the Tyr and Lys, there is often an upstream Ser and/or an Asn, contributing to the active site; while substrate binding is in the C-terminal region, which determines specificity. The standard reaction mechanism is a 4-pro-S hydride transfer and proton relay involving the conserved Tyr and Lys, a water molecule stabilized by Asn, and nicotinamide. Atypical SDRs generally lack the catalytic residues characteristic of the SDRs, and their glycine-rich NAD(P)-binding motif is often different from the forms normally seen in classical or extended SDRs. Complex (multidomain) SDRs such as ketoreductase domains of fatty acid sythase have a GGXGXXG NAD(P)-binding motif and an altered active site motif (YXXXN). Fungal type ketoacyl reductases have a TGXXXGX(1-2)G NAD(P)-binding motif.
Statistics
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PSSM-Id: 187672
Aligned: 4 rows
Threshold Bit Score: 648.024
Created: 21-Jan-2011
Updated: 2-Oct-2020
Structure
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Aligned Rows:
 
Feature 1:active site [active site]
Evidence:

Sequence Alignment
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Format: Row Display: Color Bits: Type Selection:
Feature 1                                                                                     
Q8WUS8     10 SVLITGGSGYFGFRLGCALNQngVHVILFDISSPaqtipegikFIQGDIRHLSDvekafqdaDVTCVFHIASYGMSGrEQ 89  human
A6NKP2     35 KVLVTGGGGYLGFSLGSHLAKsgTSVILLDRRRPqwelspetkFIQADVRDEEAlyr--afeGVDCVFHVASYGMSGaEK 112 human
AAI23280   10 TVVITGGGGYFGHRLGCTLHEkgVHVILFDIRKPdqelpegihFVQGDVRSLSQled--vvaGASCVFHTASYGMSGkEQ 87  African clawed frog
CAP09266    9 SFLITGGGGYFGFRLACALLKtsSKVVLFDVSPPiqdlpegliFMRADIRDYAQvek--avrGSHCVFHIASYGMSGrEQ 86  zebrafish
Feature 1              #                       #                             #   #            
Q8WUS8     90 LNRnLIKEVNVRGTDNILQVCQRRRVPRLVYTSTFNVIFGGQVIRNGD-ESLPYLPLHlHPDHYSRTKSIAEQKVLEANA 168 human
A6NKP2    113 LQKeQIESINVGGTKLVIDVCVRRRVPRLIYTSTVNVAFGGKPIEQGDeDSVPYFPLDeHVDHYSRTKAIADQLTLMANG 192 human
AAI23280   88 LHRqKIEAINVRGTENIIQACINTNVPRLVYTSTFNVIFGGQTIRDGD-ESLPYLPQDaFVDNYSRTKTVAEMFVLKMNN 166 African clawed frog
CAP09266   87 LNRkLIEEVNVKGTENILRACVAHSVPRLIYTSTFNVVFGGQEIKNGD-ESLPYLPLHlHPDHYSRTKSIAEMQVLKANN 165 zebrafish
Feature 1                                                                                     
Q8WUS8    169 TPLdrgdGVLRTCALRPAGIYGPGEQRHLPRIVSYIEKGLFKFVYGDPRSLVeFVHVDNLVQAHILASEALRAdkghiAS 248 human
A6NKP2    193 MPLpg-gGTLRTCVLRPPGIYGPEEQRHLPRVAGHIKKRLFMFRFGDHKARMnWVHVHNLVQAHVLAAEALTTakgyvAS 271 human
AAI23280  167 QELknnsGFLRTCSLRAAGIYGPGEQRHLPRIISALEKGMFLFVYGDNPLVQ-FVHVDNLISAHILAAEALTSekkyiAA 245 African clawed frog
CAP09266  166 LALsnstGVLRTCALRPAGIYGPGEQRHLPRIVSYIENGIFRFVYGDPDSLVeFVHVDNLVSAHLLAADALTEkqqcrAA 245 zebrafish
Feature 1                                                                                     
Q8WUS8    249 GQPYFISDGRPVNNFEFFRPLVEGLGYTFPSTRLPLTLVYCFAFLTEMVHFILGRLynFQPFLTRtEVYKTGVTHYFSLE 328 human
A6NKP2    272 GQAYYINDGESVNLFEWMAPLFEKLGYSQPWIQVPTSWVYLTAAVMERLHLALRPIcsLPPLLTRsEVRSVAVTHTFQIA 351 human
AAI23280  246 GQPYFISDGPPVNNFEFFRPLVEGLGYKFPSLRFPLSLVYFFAFLTEWIHFFISPVcdFQPILTRaEVFKTGVTHYFKIE 325 African clawed frog
CAP09266  246 GQAYFISDGRPVNNFEFFRPLVEGLGYSFPTLRLPISMIYFFAFLTEMVHFVVGRIynFQPLLTRtEVYKTGVTHYFSMR 325 zebrafish
Feature 1                           
Q8WUS8    329 KAKKELGYKAQPFdlqEAVEWF 350 human
A6NKP2    352 KARAQLGYAPDKFrfaDAVELY 373 human
AAI23280  326 KATRELGFEPQPFtmqDVAEWF 347 African clawed frog
CAP09266  326 KAREELGYEPKLYdleDVVQWF 347 zebrafish

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