Conserved Protein Domain Family
human_WWOX_like_SDR_c-like

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cd09809: human_WWOX_like_SDR_c-like 
human WWOX (WW domain-containing oxidoreductase)-like, classical (c)-like SDRs
Classical-like SDR domain of human WWOX and related proteins. Proteins in this subfamily share the glycine-rich NAD-binding motif of the classical SDRs, have a partial match to the canonical active site tetrad, but lack the typical active site Ser. SDRs are a functionally diverse family of oxidoreductases that have a single domain with a structurally conserved Rossmann fold (alpha/beta folding pattern with a central beta-sheet), an NAD(P)(H)-binding region, and a structurally diverse C-terminal region. Classical SDRs are typically about 250 residues long, while extended SDRs are approximately 350 residues. Sequence identity between different SDR enzymes are typically in the 15-30% range, but the enzymes share the Rossmann fold NAD-binding motif and characteristic NAD-binding and catalytic sequence patterns. These enzymes 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 (15-PGDH) numbering). In addition to the Tyr and Lys, there is often an upstream Ser (Ser-138, 15-PGDH numbering) and/or an Asn (Asn-107, 15-PGDH numbering) 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. Extended SDRs have additional elements in the C-terminal region, and typically have a TGXXGXXG cofactor binding motif. Complex (multidomain) SDRs such as ketoreductase domains of fatty acid synthase 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. Some atypical SDRs have lost catalytic activity and/or have an unusual NAD(P)-binding motif and missing or unusual active site residues. Reactions catalyzed within the SDR family include isomerization, decarboxylation, epimerization, C=N bond reduction, dehydratase activity, dehalogenation, Enoyl-CoA reduction, and carbonyl-alcohol oxidoreduction.
Statistics
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PSSM-Id: 187669
Aligned: 4 rows
Threshold Bit Score: 499.816
Created: 21-Jan-2011
Updated: 2-Oct-2020
Structure
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Aligned Rows:
 
active siteputative NAD(P)
Feature 1:active site [active site]
Evidence:
  • Comment:YXXXK motif present, upstream N present in some members; however members of this subgroup lack the less conserved S of the typical SDR catalytic triad
  • Citation:PMID 7742302
  • Comment:upstream N, conserved in many SDRs, is implicated in catalysis or cofactor binding

Sequence Alignment
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Format: Row Display: Color Bits: Type Selection:
Feature 1                                                                                     
Q9NZC7    124 GKVVVVTGANSGIGFETAKSFALHGaHVILACRNMARASEAvsril--eewhKAKVEAMTLDLALLRSVQHFAEAFKakn 201 human
Q803A8    121 DKVIIVTGANSGIGFETARSFALHGaHVILACRNQSRASKAaslim--gewsKARVEVLPLDLASLRSVRQFAELFKatk 198 zebrafish
Q5F389    124 GKVIIITGANSGIGFETAKSFALHGaYVILACRNMSRGNDAvqril--eewhKAKVEAMTLDLASLRSVQNFAEAFKskn 201 chicken
Q9VLU5    121 GRTALITGANCGIGYETARSLAHHGcEIIFACRNRSSAEAAieriaqerpaaRSRCRFAALDLSSLRSVQRFVEEIKqsv 200 fruit fly
Feature 1                                   #                                 #               
Q9NZC7    202 vPLHVLVCNAATFALPWslTKDGLETTFQVNHLGHFYLVQLLQDVLcrsapaRVIVVSSESHRFTDINdslgkLDFSRLS 281 human
Q803A8    199 lPLHVLVCNAAVCSQPWrlTEDGFESTFQICHLGHFLLVQLLQDVLrlsapaRVVVVSSESHRFTDLLdscgnLDLDLLS 278 zebrafish
Q5F389    202 mPLHILVCNAAIFGSSWclTEDGLESTFQVNHLGHFYLVQLLEDILrrsspaRVVVVSSESHRFTEIKdssgkLDFSLLS 281 chicken
Q9VLU5    201 sHIDYLILNAGVFALPYtrTVDGLETTFQVSHLSHFYLTLQLETLFdy--ktRIIVLSSESHRFANLPve--nLAVHHLS 276 fruit fly
Feature 1                #   #                                                                
Q9NZC7    282 PtkndYWAMLAYNRSKLCNILFSNELHRRlsprGVTSNAVHPGNMMYSNIHRsWWVYTLLFTLARPFTKSMQQGAATTVY 361 human
Q803A8    279 PpqknYWSLLAYNRAKLCNLLFSSELHRRmsphGICCNALHPGSMMFTSIHRsWWLLTLLFSLARPFTKSMQQGAATTVY 358 zebrafish
Q5F389    282 PskkeYWAMLAYNRSKLCNILFSNELNRRlsphGVTSNSVHPGNMIYSSIHRnWWVYTLLFTLARPFTKSMQQGAATTVY 361 chicken
Q9VLU5    277 PppekYWSMMAYNNAKLCNVLFAQELAQRwkqrGISVFSLHPGNMVSSDLSRnYWFYRLLFAIVRPFTKSLQQAAATSIY 356 fruit fly
Feature 1                                                   
Q9NZC7    362 CAAVpELEGLGGMYFNNCCRCMPSpeaqSEETARTLWALSERLIQE 407 human
Q803A8    359 CAVApELEGIGGMYFNNCFRCLPSpqaqDPAAALSLWELSERLVQE 404 zebrafish
Q5F389    362 CATAaELEGLGGMYFNNCCRCLPSaearNELTAVALWELSERLIRE 407 chicken
Q9VLU5    357 CATAnELTGLSGLYFNNCFFCEPSklskSAALQQQLWKLSENLIAE 402 fruit fly

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