Conserved Protein Domain Family
ABC_MSH3_euk

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cd03287: ABC_MSH3_euk 
ATP-binding cassette domain of eukaryotic MutS3 homolog
The MutS protein initiates DNA mismatch repair by recognizing mispaired and unpaired bases embedded in duplex DNA and activating endo- and exonucleases to remove the mismatch. Members of the MutS family possess C-terminal domain with a conserved ATPase activity that belongs to the ATP binding cassette (ABC) superfamily. MutS homologs (MSH) have been identified in most prokaryotic and all eukaryotic organisms examined. Prokaryotes have two homologs (MutS1 and MutS2), whereas seven MSH proteins (MSH1 to MSH7) have been identified in eukaryotes. The homodimer MutS1 and heterodimers MSH2-MSH3 and MSH2-MSH6 are primarily involved in mitotic mismatch repair, whereas MSH4-MSH5 is involved in resolution of Holliday junctions during meiosis. All members of the MutS family contain the highly conserved Walker A/B ATPase domain, and many share a common mechanism of action. MutS1, MSH2-MSH3, MSH2-MSH6, and MSH4-MSH5 dimerize to form sliding clamps, and recognition of specific DNA structures or lesions results in ADP/ATP exchange.
Statistics
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PSSM-Id: 213254
Aligned: 5 rows
Threshold Bit Score: 379.524
Created: 27-May-2005
Updated: 2-Oct-2020
Structure
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Aligned Rows:
  next features
Feature 1:ATP binding site [chemical binding site]
Evidence:
  • Comment:Walker A, Walker B, Q-loop, D-loop, and H-loop form the nucleotide binding site

Sequence Alignment
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Format: Row Display: Color Bits: Type Selection:
Feature 1                                              ## ###                                  
XP_474400  769 IHIKDGRHPVLESLlgvnFVPNDTELHANSEYCQIVTGPNMGGKSCYIRQVALITLMAQVGSFVPASSATLHAVDGIYTR 848  Japanese rice
P25336     784 IIAKNARNPIIESLdv-hYVPNDIMMSPENGKINIITGPNMGGKSSYIRQVALLTIMAQIGSFVPAEEIRLSIFENVLTR 862  baker's yeast
P26359     722 LLIHESRHPMIELLsdksFVPNHIHLSSDGVRCLLITGPNMGGKSSFVKQLALSAIMAQSGCFVPAKSALLPIFDSILIR 801  fission yeast
AAW42187   913 LKILAGRHPMVEMLreesYVPFDIHFSKEEGTTKIITGPNMAGKSSTVRAMALIVCMAQIGSFVPAASVTLSVHDSVQTR 992  Cryptococcus neo...
O65607     780 INIQSGRHPVLETIlqdnFVPNDTILHAEGEYCQIITGPNMGGKSCYIRQVALISIMAQVGSFVPASFAKLHVLDGVFTR 859  thale cress
Feature 1       #                                  ##                                  #       
XP_474400  849 MGASDSIQHGTSTFYEELSEASNILHNCSSRSLVIIDELGRGTSTHDGVAIAYATLHYllke-kkcmVIFVTHYPKILni 927  Japanese rice
P25336     863 IGAHDDIINGDSTFKVEMLDILHILKNCNKRSLLLLDEVGRGTGTHDGIAISYALIKYfselsdcplILFTTHFPMLGei 942  baker's yeast
P26359     802 MGSSDNLSVNMSTFMVEMLETKEVLSKATEKSMVIIDELGRGTSTIDGEAISYAVLHYlnqy-iksyLLFVTHFPSLGil 880  fission yeast
AAW42187   993 MGASDEIGRGKSTFMVELSETSDILQTITPRSLVVLDELGRGTSTYDGIAIAYATLSHiaei--gcnTLFVTHYPTVAqd 1070 Cryptococcus neo...
O65607     860 MGASDSIQHGRSTFLEELSEASHIIRTCSSRSLVILDELGRGTSTHDGVAIAYATLQHllae-krclVLFVTHYPEIAei 938  thale cress
Feature 1                                                                                  
XP_474400  928 lre-fegsVGAYHVSYLAtrkllevadrqmvinntetkdlgeITFLYKLVAGASDRSFGLNVALLAQLPSSCIERA 1002 Japanese rice
P25336     943 k----splIRNYHMDYVEeqktg--------------edwmsVIFLYKLKKGLTYNSYGMNVAKLARLDKDIINRA 1000 baker's yeast
P26359     881 err-fegqLRCFHMGYLKskedfe------------tsvsqsISFLYKLVPGVASKSYGLNVARMAGIPFSILSRA 943  fission yeast
AAW42187  1071 larekpdkISNWHMSFDEiqmpd---------------ggaeITFLYQLTRGLQEASFGVWCARLAGLPKPILDTA 1131 Cryptococcus neoform...
O65607     939 sng-fpgsVGTYHVSYLTlqkdkg------------sydhddVTYLYKLVRGLCSRSFGFKVAQLAQIPPSCIRRA 1001 thale cress

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