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BRCA2的两个DNA结合结构域在DNA损伤修复和复制叉维持中的不同作用。

Distinct roles of the two BRCA2 DNA binding domains in DNA damage repair and replication fork preservation.

作者信息

Neal Francisco, Li Wenjing, Uhrig Mollie E, Sharma Neelam, Syed Shahrez, Burma Sandeep, Hromas Robert, Mazin Alexander, Dray Eloise, Libich David, Olsen Shaun, Wasmuth Elizabeth, Zhao Weixing, Sørensen Claus S, Wiese Claudia, Kwon Youngho, Sung Patrick

出版信息

bioRxiv. 2024 Sep 26:2024.09.24.614752. doi: 10.1101/2024.09.24.614752.

Abstract

Homologous recombination (HR) is a highly conserved tool for the removal of DNA double-strand breaks (DSBs) and the preservation of stalled and damaged DNA replication forks. Successful completion of HR requires the tumor suppressor BRCA2. Germline mutations in BRCA2 lead to familial breast, ovarian, and other cancers, underscoring the importance of this protein for maintaining genome stability. BRCA2 harbors two distinct DNA binding domains, one that possesses three oligonucleotide/oligosaccharide binding (OB) folds (known as the OB-DBD), and with the other residing in the C-terminal recombinase binding domain (termed the CTRB-DBD) encoded by the last gene exon. Here, we employ a combination of genetic, biochemical, and cellular approaches to delineate contributions of these two DNA binding domains toward HR and the maintenance of stressed DNA replication forks. We show that OB-DBD and CTRB-DBD confer ssDNA and dsDNA binding capabilities to BRCA2, respectively, and that BRCA2 variants mutated in either DNA binding domain are impaired in the ability to load the recombinase RAD51 onto ssDNA pre-occupied by RPA. While the CTRB-DBD mutant is modestly affected for HR, it exhibits a strong defect in the protection of stressed replication forks. In contrast, the OB-DBD is indispensable for both BRCA2 functions. Our study thus defines the unique contributions of the two BRCA2 DNA binding domains in genome maintenance.

摘要

同源重组(HR)是一种高度保守的机制,用于修复DNA双链断裂(DSB)以及维持停滞和受损的DNA复制叉。HR的成功完成需要肿瘤抑制因子BRCA2。BRCA2的种系突变会导致家族性乳腺癌、卵巢癌和其他癌症,这凸显了该蛋白对于维持基因组稳定性的重要性。BRCA2含有两个不同的DNA结合结构域,一个具有三个寡核苷酸/寡糖结合(OB)折叠(称为OB-DBD),另一个位于由最后一个基因外显子编码的C端重组酶结合结构域(称为CTRB-DBD)中。在这里,我们采用遗传、生化和细胞方法相结合的方式,来描绘这两个DNA结合结构域对HR以及维持应激DNA复制叉的作用。我们发现,OB-DBD和CTRB-DBD分别赋予BRCA2单链DNA和双链DNA结合能力,并且在任一DNA结合结构域中发生突变的BRCA2变体,在将重组酶RAD51加载到被RPA占据的单链DNA上的能力方面都存在缺陷。虽然CTRB-DBD突变体对HR的影响较小,但它在保护应激复制叉方面表现出强烈的缺陷。相比之下,OB-DBD对于BRCA2的这两种功能都是不可或缺的。因此,我们的研究确定了BRCA2的两个DNA结合结构域在基因组维持中的独特作用。

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