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Two modules in the BRC repeats of BRCA2 mediate structural and functional interactions with the RAD51 recombinase

机译:BRCA2的BRC重复序列中的两个模块介导与RAD51重组酶的结构和功能相互作用

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摘要

The breast and ovarian cancer suppressor protein BRCA2 controls the RAD51 recombinase in reactions that lead to homologous DNA recombination (HDR). BRCA2 binds RAD51 via eight conserved BRC repeat motifs of approximately 35 amino acids, each with a varying capacity to bind RAD51. BRC repeats both promote and inhibit RAD51 assembly on different DNA substrates to regulate HDR, but the structural basis for these functions is unclear. Here, we demarcate two tetrameric clusters of hydrophobic residues in the BRC repeats, interacting with distinct pockets in RAD51, and show that the co-location of both modules within a single BRC repeat is necessary for BRC–RAD51 binding and function. The two modules comprise the sequence FxxA, known to inhibit RAD51 assembly by blocking the oligomerization interface, and a previously unrecognized tetramer with the consensus sequence LFDE, which binds to a RAD51 pocket distinct from this interface. The LFDE motif is essential in BRC repeats for modes of RAD51 binding both permissive and inhibitory to RAD51 oligomerization. Targeted insertion of point mutations in RAD51 that disrupt the LFDE-binding pocket impair its assembly at DNA damage sites in living cells. Our findings suggest a model for the modular architecture of BRC repeats that provides fresh insight into the mechanisms regulating homologous DNA recombination.
机译:乳腺癌和卵巢癌抑制蛋白BRCA2在导致同源DNA重组(HDR)的反应中控制RAD51重组酶。 BRCA2通过大约35个氨基酸的八个保守BRC重复基序与RAD51结合,每个基序具有不同的结合RAD51的能力。 BRC重复促进和抑制RAD51在不同DNA底物上的组装以调节HDR,但这些功能的结构基础尚不清楚。在这里,我们划定了BRC重复序列中两个疏水残基的四聚体簇,与RAD51中的不同口袋相互作用,并显示出单个BRC重复序列中两个模块的共位对于BRC-RAD51的结合和功能是必需的。这两个模块包括序列FxxA(已知通过阻断低聚界面来抑制RAD51的组装),以及先前无法识别的具有共有序列LFDE的四聚体,其与不同于该界面的RAD51口袋结合。 LFDE基序在BRC重复中对于RAD51结合允许和抑制RAD51寡聚化的模式至关重要。 RAD51中靶向插入点突变会破坏LFDE结合口袋,从而破坏其在活细胞DNA损伤部位的组装。我们的发现提出了BRC重复模块结构的模型,该模型为调节同源DNA重组的机制提供了新的见识。

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