Conserved Protein Domain Family
H3TH_GEN1

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cd09905: H3TH_GEN1 
H3TH domain of Gap Endonuclease 1, a structure-specific, divalent-metal-ion dependent, 5' nuclease.
Gap Endonuclease 1 (GEN1): Holliday junction resolvase reported to symmetrically cleave Holliday junctions and allow religation without additional processing. GEN1 is a member of the structure-specific, 5' nuclease family that catalyzes hydrolysis of DNA duplex-containing nucleic acid structures during DNA replication, repair, and recombination. Members of this subgroup include the H3TH (helix-3-turn-helix) domains of GEN1 and other similar eukaryotic 5' nucleases. These nucleases contain a PIN (PilT N terminus) domain with a helical arch/clamp region/I domain (not included here) and inserted within the PIN domain is an atypical helix-hairpin-helix-2 (HhH2)-like region. This atypical HhH2 region, the H3TH domain, has an extended loop with at least three turns between the first two helices, and only three of the four helices appear to be conserved. Both the H3TH domain and the helical arch/clamp region are involved in DNA binding. Studies suggest that a glycine-rich loop in the H3TH domain contacts the phosphate backbone of the template strand in the downstream DNA duplex. These nucleases have a carboxylate rich active site that is involved in binding essential divalent metal ion cofactors (Mg2+ or Mn2+) required for nuclease activity. The first metal binding site is composed entirely of Asp/Glu residues from the PIN domain, whereas, the second metal binding site is composed generally of two Asp residues from the PIN domain and one Asp residue from the H3TH domain. Together with the helical arch and network of amino acids interacting with metal binding ions, the H3TH region defines a positively charged active-site DNA-binding groove in structure-specific 5' nucleases.
Statistics
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PSSM-Id: 188625
Aligned: 8 rows
Threshold Bit Score: 147.499
Created: 21-Jan-2011
Updated: 2-Oct-2020
Structure
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Aligned Rows:
 
putative DNAputative metal
Feature 1:putative DNA binding site [nucleic acid binding site]
Evidence:
  • Comment:Together with the helical arch and network of amino acids interacting with metal binding ions, the H3TH region defines a positively charged active-site DNA-binding groove in structure-specific 5' nucleases.
  • Comment:Studies suggest that a glycine-rich loop in the H3TH domain contacts the phosphate backbone of the template strand in the downstream DNA duplex.
  • Citation:PMID 9699635

Sequence Alignment
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Format: Row Display: Color Bits: Type Selection:
Feature 1               ######  ###### ####                                                   
Q29FC1    209 QHKIIVMALLCGCDYCpdGIGGIGkDGVLKLFNKYKesEILDRLRNWRAEtdkynale---------------------m 267 Drosophila pseudoo...
EAT48523  215 QEKIVAMGILSGCDYSpaGVPGVGrEMINRLLNIYHsrDVLARIRSWRATadrlteqe---------------------i 273 yellow fever mosquito
EFA08397  201 RNKIIALALLCGSDYSd-GVHGIGkDSVVKFFNLVKddEILQRLRSWRHAsiyddlea---------------------- 257 red flour beetle
EFN88367  200 RNKMIALALLCGCDYDe-GVTGVGkEAALKFFKIVEdnNVLQRIQEWRTDtkldkves---------------------- 256 Harpegnathos saltator
Q17RS7    195 RDALVGLAILLGCDYLpkGVPGVGkEQALKLIQILKgqSLLQRFNRWNETscnsspql---------------------l 253 human
EFJ33017  200 REHLIALALLVGCDYNlrGIPGVGySNAMRLVQHFSkdEILDNLRKWGRReypspevigklsdsangfdskegddaalhl 279 Selaginella moelle...
Q9LPD2    200 RKHLIAISLLVGNDYDsgGVLGIGvDKALRIVREFSedQVLERLQDIGNGlqpavpggiksgdd---------geefrse 270 thale cress
EDQ51065  203 REHMIALALLMGCDYNkkGVVGIGcNRAIRLVRSVSsnKVFDSEANGDQNdegksscrkpdsv------------ntsms 270 Physcomitrella pat...
Feature 1                                                                                     
Q29FC1    268 rvddksiCSNCGHIGRTQSHTKSGCSVCrtkrgcdktlwke-----------------------qrlsikaelilrRKAL 324 Drosophila pseudoo...
EAT48523  274 kaedknvCADCGHQGKTFVHRRAGCQDCrtkvgcdesrwkn-----------------------qranikteldikRKAL 330 yellow fever mosquito
EFA08397  258 kicdknrCTSCGHSGKVQAHAKKGCIVCktnqgcgssykn------------------------erleiknelnmrSKAL 313 red flour beetle
EFN88367  257 dllnsdlCTSCGHKGKLQKHIKSGCTDCgtirkcnddykh------------------------krvlmlneislrKKAL 312 Harpegnathos saltator
Q17RS7    254 vtkklahCSVCSHPGSPKDHERNGCRLCksdkycephdyeyccpce------------whrtehdrqlsevennikKKAC 321 human
EFJ33017  280 grrkdshCSMCGHPGNKKLHTKLGCEDCgslntagcsqkaknfkcgcgs------caqdrrrkkhekdvtwwsnlrAKIS 353 Selaginella moelle...
Q9LPD2    271 mkkrsphCSRCGHLGSKRTHFKSSCEHCgcdsgcikkplgfrcecsfc--------skdrdlreqkktndwwikvcDKIA 342 thale cress
EDQ51065  271 tkkslrhCGNCGHLGTRREHIVAGCTFCkgvadrteatewgclqkekgfqcaceacvkkkkskkstrqknwwvkccDKMA 350 Physcomitrella pat...
Feature 1                      
Q29FC1    325 LApeFPNEEIISEFLSE 341 Drosophila pseudoobscura pseudoobscura
EAT48523  331 QDpdFPPEAIVSEFMER 347 yellow fever mosquito
EFA08397  314 LDpnFPDENLINEFLGQ 330 red flour beetle
EFN88367  313 CDetFPKQELIEEFLVR 329 Harpegnathos saltator
Q17RS7    322 CCegFPFHEVIQEFLLN 338 human
EFJ33017  354 AIedFPNEEIIEIFLNT 370 Selaginella moellendorffii
Q9LPD2    343 LApeFPNRKIIELYLSD 359 thale cress
EDQ51065  351 KSdgFPNEDIINIFLRP 367 Physcomitrella patens subsp. patens

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