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Double-strand break repair-independent role for BRCA2 in blocking stalled replication fork degradation by MRE11

机译:BRCA2的双链断裂修复独立作用在阻止MRE11停滞的复制叉降解中

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摘要

Breast cancer suppressor BRCA2 is critical for maintenance of genomic integrity and resistance to agents that damage DNA or collapse replication forks, presumably through homology-directed repair of double-strand breaks (HDR). Using single-molecule DNA fiber analysis, we show here that nascent replication tracts created before fork stalling with hydroxyurea are degraded in the absence of BRCA2 but are stable in wild-type cells. BRCA2 mutational analysis reveals that a conserved C-terminal site involved in stabilizing RAD51 filaments, but not in loading RAD51 onto DNA, is essential for this fork protection but dispensable for HDR. RAD51 filament disruption in wild-type cells phenocopies BRCA2 deficiency. BRCA2 prevents chromosomal aberrations on replication stalling, which are alleviated by inhibition of MRE11, the nuclease responsible for this form of fork instability. Thus, BRCA2 prevents rather than repairs nucleolytic lesions at stalled replication forks to maintain genomic integrity and hence likely suppresses tumorigenesis through this replication-specific function.
机译:乳腺癌抑制基因BRCA2对于维持基因组完整性和抵抗破坏DNA或破坏复制叉的药物至关重要,大概是通过同源性指导的双链断裂(HDR)修复。使用单分子DNA纤维分析,我们在这里显示在没有BRCA2的情况下,用羟基脲叉叉前产生的新生复制道会降解,但在野生型细胞中稳定。 BRCA2突变分析表明,保守的C端位点可稳定RAD51细丝,但不会将RAD51加载到DNA上,对于叉保护至关重要,但对HDR却是必需的。 RAD51细丝破坏野生型细胞表型BRCA2缺乏。 BRCA2可以防止复制停滞引起的染色体畸变,该畸变可通过抑制MRE11来缓解,MRE11是造成这种叉子不稳定性的核酸酶。因此,BRCA2可以防止而不是修复停滞的复制叉处的核酸损伤,以维持基因组完整性,因此很可能通过这种复制特异性功能抑制了肿瘤的发生。

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