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Structure and mechanism of BRCA1 BRCT domain recognition of phosphorylated BACH1 with implications for cancer

机译:BRCA1 BRCT结构域识别磷酸化BACH1的结构和机制及其对癌症的影响

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摘要

Germline mutations in the BRCA1 tumor suppressor gene often result in a significant increase in susceptibility to breast and ovarian cancers. Although the molecular basis of their effects remains largely obscure, many mutations are known to target the highly conserved C-terminal BRCT repeats that function as a phosphoserine/phosphothreonine-binding module. We report the X-ray crystal structure at a resolution of 1.85 A of the BRCA1 tandem BRCT domains in complex with a phosphorylated peptide representing the minimal interacting region of the DEAH-box helicase BACH1. The structure reveals the determinants of this novel class of BRCA1 binding events. We show that a subset of disease-linked mutations act through specific disruption of phospho-dependent BRCA1 interactions rather than through gross structural perturbation of the tandem BRCT domains.
机译:BRCA1肿瘤抑制基因中的种系突变通常会导致乳腺癌和卵巢癌的易感性显着提高。尽管其作用的分子基础仍然很模糊,但已知许多突变靶向高度保守的C端BRCT重复序列,这些重复序列充当磷酸丝氨酸/磷酸苏氨酸结合模块。我们报告X射线晶体结构的BRCA1串联BRCT域的1.85 A的决议与磷酸化的肽,代表DEAH框解旋酶BACH1的最小相互作用区域复杂。该结构揭示了这类新型BRCA1结合事件的决定因素。我们表明,与疾病有关的突变的一个子集是通过磷酸依赖性BRCA1相互作用的特异性破坏而不是通过串联BRCT域的总体结构扰动来起作用的。

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