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Structural basis of BACH1 phosphopeptide recognition by BRCA1 tandem BRCT domains

机译:BRCA1串联BRCT域识别BACH1磷酸肽的结构基础

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摘要

BRCT tandem domains, found in many proteins involved in DNA damage checkpoint and DNA repair pathways, were recently shown to be phosphopeptide binding motifs. Using solution nuclear magnetic resonance (NMR) spectroscopy and mutational analysis, we have characterized the interaction of BRCA1-BRCT domains with a phosphoserine-containing peptide derived from the DNA repair helicase BACH1. We show that a phenylalanine in the +3 position from the phosphoserine of BACH1 is bound to a conserved hydrophobic pocket formed between the two BRCT domains and that recognition of the phosphate group is mediated by lysine and serine side chains from the amino-terminal BRCT domain. Mutations that prevent phosphopeptide binding abolish BRCA1 function in DNA damage-induced checkpoint control. Our NMR data also reveal a dynamic interaction between BRCA1-BRCT and BACH1, where the bound phosphopeptide exists as an equilibrium of two conformations and where BRCA1-BRCT undergoes a transition to a more rigid conformation upon peptide binding.
机译:在涉及DNA损伤检查点和DNA修复途径的许多蛋白质中发现的BRCT串联结构域最近被证明是磷酸肽结合基序。使用溶液核磁共振(NMR)光谱和突变分析,我们表征了BRCA1-BRCT域与衍生自DNA修复解旋酶BACH1的含磷酸丝氨酸的肽之间的相互作用。我们显示,从BACH1的磷酸丝氨酸的+3位置的苯丙氨酸与两个BRCT域之间形成的保守疏水口袋结合,并且磷酸基团的识别是由氨基末端BRCT域的赖氨酸和丝氨酸侧链介导的。防止磷酸肽结合的突变消除了DNA损伤诱导的检查点控制中的BRCA1功能。我们的NMR数据还揭示了BRCA1-BRCT和BACH1之间的动态相互作用,其中结合的磷酸肽以两个构象的平衡形式存在,而BRCA1-BRCT在肽结合后经历向更刚性构象的转变。

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