首页 /研究 /Phosphopeptide Binding Specificities of BRCA1 COOH-terminal (BRCT) Domains
OTHER

Phosphopeptide Binding Specificities of BRCA1 COOH-terminal (BRCT) Domains

M. C. Rodríguez, Xiaochun Yu, Junjie Chen, Zhou Songyang

发表年份
2003
引用次数
235
访问权限
开放获取

摘要

Protein phosphorylation by protein kinases may generate docking sites for other proteins. It thus allows the assembly of signaling complexes in response to kinase activation. Several protein domains that bind phosphoserine or phosphothreonine residues have been identified, including the 14-3-3, PIN1, FHA, KIX, WD-40 domain, and polo box (Yaffe, M. B., and Elia, A. E. (2001) Curr. Opin. Cell Biol. 13, 131-138; Elia, A. E., Cantley, L. C., and Yaffe, M. B. (2003) Science 299, 1228-1231). The BRCA1 COOH-terminal (BRCT) domains are protein modules found in many proteins that regulate DNA damage responses (Koonin, E. V., Altschul, S. F., and Bork, P. (1996) Nat. Genet. 13, 266-268). Whether BRCT domains can mediate phosphorylation-dependent interactions has not been systematically investigated. We report here that the BRCT domains also recognize phosphopeptides. Oriented peptide library analysis indicated that the BRCT domains from BRCA1, MDC1, BARD1, and DNA Ligase IV preferred distinct phosphoserine-containing peptides. In addition, the interaction between BRCA1 and the BRCT binding motif of BACH1 was required for BACH1 checkpoint activity. Furthermore, BRCT domains of the yeast DNA repair protein Rad9 could bind phosphopeptides, suggesting that the BRCT domains represent a class of ancient phosphopeptide-binding modules. Potential targets of BRCT domains were identified through data base search. Structural analysis of BRCA1 BRCT repeats also predicted conserved residues that may form the phosphopeptide-binding pocket. Thus, the BRCT repeats are a new family of phosphopeptide-binding domains in DNA damage responses. Protein phosphorylation by protein kinases may generate docking sites for other proteins. It thus allows the assembly of signaling complexes in response to kinase activation. Several protein domains that bind phosphoserine or phosphothreonine residues have been identified, including the 14-3-3, PIN1, FHA, KIX, WD-40 domain, and polo box (Yaffe, M. B., and Elia, A. E. (2001) Curr. Opin. Cell Biol. 13, 131-138; Elia, A. E., Cantley, L. C., and Yaffe, M. B. (2003) Science 299, 1228-1231). The BRCA1 COOH-terminal (BRCT) domains are protein modules found in many proteins that regulate DNA damage responses (Koonin, E. V., Altschul, S. F., and Bork, P. (1996) Nat. Genet. 13, 266-268). Whether BRCT domains can mediate phosphorylation-dependent interactions has not been systematically investigated. We report here that the BRCT domains also recognize phosphopeptides. Oriented peptide library analysis indicated that the BRCT domains from BRCA1, MDC1, BARD1, and DNA Ligase IV preferred distinct phosphoserine-containing peptides. In addition, the interaction between BRCA1 and the BRCT binding motif of BACH1 was required for BACH1 checkpoint activity. Furthermore, BRCT domains of the yeast DNA repair protein Rad9 could bind phosphopeptides, suggesting that the BRCT domains represent a class of ancient phosphopeptide-binding modules. Potential targets of BRCT domains were identified through data base search. Structural analysis of BRCA1 BRCT repeats also predicted conserved residues that may form the phosphopeptide-binding pocket. Thus, the BRCT repeats are a new family of phosphopeptide-binding domains in DNA damage responses. Originally identified as a sequence motif homologous to the BRCA1 COOH-terminal region, the BRCT 1The abbreviations used are: BRCTBRCA1 COOH-terminalGSTglutathione S-transferaseFHAforkhead-associatedFITCfluorescein isothiocyanatesiRNAsmall interfering RNA.1The abbreviations used are: BRCTBRCA1 COOH-terminalGSTglutathione S-transferaseFHAforkhead-associatedFITCfluorescein isothiocyanatesiRNAsmall interfering RNA. domain is a protein domain approximately 90 amino acids in length (3Koonin E.V. Altschul S.F. Bork P. Nat. Genet. 1996; 13: 266-268Crossref PubMed Scopus (359) Google Scholar, 4Wu L.C. Wang Z.W. Tsan J.T. Spillman M.A. Phung A. Xu X.L. Yang M.C. Hwang L.Y. Bowcock A.M. Baer R. Nat. Genet. 1996; 14: 43

关键词

PhosphopeptidePhosphoserineDNA ligaseBiologyPhosphorylationProtein–protein interactionCell biologyBinding siteBiochemistryDNA

相关论文

查看 OTHER 分类全部论文