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BRCA2 BRC motifs bind RAD51-DNA filaments

机译:BRCA2 BRC基序与RAD51-DNA细丝结合

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Germ-line mutations in BRCA2 account for approximately half the cases of autosomal dominant familial breast cancers. BIRCA2 has been shown to interact directly with RAD51, an essential component of the cellular machinery for homologous recombination and the maintenance of genome stability. Interactions between BRCA2 and RAD51 take place by means of the conserved BRC repeat regions of BRCA2. Previously, it was shown that peptides corresponding to BRC3 or BRC4 bind RAD51 monomers and block RAD51-DNA filament formation. In this work, we further analyze these interactions and find that at lower molar ratios BRC3 or BRC4 actually bind and form stable complexes with RAD51-DNA nucleoprotein filaments. Only at high concentrations of the BRC repeats are filaments disrupted. The specific protein-protein contacts occur in the RAD51 filament by means of the N-terminal domain of RAD51 for BRC3 and the nucleotide-binding core of RAD51 for BRC4. These observations show that the BRC repeats bind distinct regions of RAD51 and are nonequivalent in their mode of interaction. The results provide insight into why mutation in just one of the eight BRC repeats would affect the way that BRCA2 protein interacts with the RAD51 filament. Disruption of a single RAD51 interaction site, one of several simultaneous interactions occurring throughout the BRC repeat-containing exon 11 of BRCA2, might modulate the ability of RAD51 to promote recombinational repair and lead to an increased risk of breast cancer.
机译:BRCA2的种系突变约占常染色体显性家族性乳腺癌病例的一半。已显示BIRCA2与RAD51直接相互作用,RAD51是细胞机器中用于同源重组和维持基因组稳定性的重要组成部分。 BRCA2和RAD51之间的相互作用是通过BRCA2的保守BRC重复区域进行的。以前,已表明对应于BRC3或BRC4的肽结合RAD51单体并阻止RAD51-DNA细丝形成。在这项工作中,我们进一步分析了这些相互作用,发现在较低的摩尔比下,BRC3或BRC4实际上与RAD51-DNA核蛋白丝结合并形成稳定的复合物。仅在高浓度的BRC重复序列中,细丝才被破坏。通过RAD51的N末端结构域(对于BRC3)和RAD51的核苷酸结合核心(对于BRC4),在RAD51细丝中发生特定的蛋白质-蛋白质接触。这些观察结果表明,BRC重复结合了RAD51的不同区域,并且在它们的相互作用方式上是不等价的。结果提供了洞察力,为什么只有八个BRC重复序列之一发生突变会影响BRCA2蛋白与RAD51细丝相互作用的方式。单个RAD51相互作用位点的破坏是BRCA2整个包含BRC重复序列的外显子11发生的几种同时相互作用之一,可能会调节RAD51促进重组修复的能力,并导致患乳腺癌的风险增加。

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