1A1Z,2GF5,1A1W


Conserved Protein Domain Family
DED_FADD

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cd08336: DED_FADD 
Click on image for an interactive view with Cn3D
Death Effector Domain found in Fas-Associated via Death Domain
Death Effector Domain (DED) found in Fas-Associated via Death Domain (FADD). DEDs comprise a subfamily of the Death Domain (DD) superfamily. FADD is a component of the death-inducing signaling complex (DISC) and serves as an adaptor in the signaling pathway of death receptor proteins. It modulates apoptosis as well as non-apoptotic processes such as cell cycle progression, survival, innate immune signaling, and hematopoiesis. FADD contains an N-terminal DED and a C-terminal DD. Its DD interacts with the DD of the activated death receptor and its DED recruits the initiator caspases 8 and 10 to the DISC complex via a homotypic interaction with the N-terminal DED of the caspase. DDs are protein-protein interaction domains found in a variety of domain architectures. Their common feature is that they form homodimers by self-association or heterodimers by associating with other members of the DD superfamily including PYRIN and CARD (Caspase activation and recruitment domain). They serve as adaptors in signaling pathways and they can recruit other proteins into signaling complexes.
Statistics
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PSSM-Id: 260043
Aligned: 22 rows
Threshold Bit Score: 71.0617
Created: 18-Nov-2009
Updated: 2-Oct-2020
Structure
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Program:
Drawing:
Aligned Rows:
 
charge triad
Conserved site includes 3 residues -Click on image for an interactive view with Cn3D
Feature 1: charge triad [active site], 3 residue positions
Conserved feature residue pattern:[ED] R DClick to see conserved feature residue pattern help
Evidence:
  • Comment:The charge triad is part of a signature motif (E/D-RxDL) that is present in the DED family but not in other families of death domains (DD, CARD or Pyrin).
  • Comment:The charge triad is essential for the function of some DED-containing proteins. In FLIP, it is involved in the interaction with FADD to block apoptosis. In PEA15, the triad is necessary for interaction with ERK MAP kinase.

Sequence Alignment
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Format: Row Display: Color Bits: Type Selection:
Feature 1                          #                                                      # #    
1A1Z_A         2 DPFLVLLHSVSS-SLSSSELTELKGLCLgrVGKRKLERVqSGLDLFSMLLEQNDLEPGHTELLRELLASLR--RHDLLRR 78  human
ACI67407       2 SAFNSFLLKISG-ELVGDQLEKMKFLCIneIGKSRLEKMtNGLQLFTGLMERNKLGPDNTVFLVSLLKDIG--RLDLADK 78  Atlantic salmon
NP_001098257   4 ETFNALLLDISN-QLKEEDLSKMKFLVRdhVGKRDLERIaSGHGLFQALAERGHLGPENLDFLIGVLQGIP--RVDLSEK 80  Japanese medaka
ACA30400      10 IEFKKCLNEIGK-KLTDEQLESLKFLCSdfIGRKRQEEItRPLQLFQALEERDKLRFDNTGFLKEILRTEK--REDLVKD 86  Japanese lancelet
XP_002126856   4 EKLSEYRILLANvSERVKNLKELKFQCSdwIGRGKMEKLlTPLDLLVVLEERDKISKEDVSFLVQILSNTR--RNDLAKL 81  Ciona intestinalis
ABK42074      14 IEGKFKQLLNHL-SKNDFDIESLKYQCAdhIKPAHMERItSSLQLFTALHERDVINPENLAFLTNIFDTFD--RVDLTQT 90  Molgula tectifo...
EEN52487      10 IEFKKCLNEIGK-KLTDEQLLSLKFLCSdyIGRKRQEEIkSPLHLFQALEERDKLRYDNTGFLKEILQTEK--REDLVKY 86  Florida lancelet
EKC21432       5 FEYKQMLLELDK-SLKAEEFESLKFLCKdeVKKRERESVnRPTDLWEILETREKLGPNNLAFLKQIIKGSCngRLDVLRV 83  Pacific oyster
ELU17899       4 LEFKVMLANLAR-EMSARDLETMKFMCSdfIPKAVKEEIdSGLQLWTALEERDKLSQGDTAFLRILLQNCVskRTDLIGI 82  Capitella sp. I...
ADB80144      22 PAFRKTLMRVAM-KLKEPEVENIKYMCPf-IPRSRREEIkSAIQLFEELEYQDYLSVDNTKDLKDFVKEIS--RPDVIRI 97  Saccoglossus ko...
Feature 1             
1A1Z_A        79 VDDFE 83  human
ACI67407      79 MTNCE 83  Atlantic salmon
NP_001098257  81 LQQQF 85  Japanese medaka
ACA30400      87 IETFE 91  Japanese lancelet
XP_002126856  82 AQNFQ 86  Ciona intestinalis
ABK42074      91 IQQYH 95  Molgula tectiformis
EEN52487      87 IEDFE 91  Florida lancelet
EKC21432      84 IENFE 88  Pacific oyster
ELU17899      83 LNKYE 87  Capitella sp. I Grassle & Grassle, 1976
ADB80144      98 LEEYE 102 Saccoglossus kowalevskii

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