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BRCA2的同源物Brh2在双链DNA-单链DNA连接处促使RAD51丝状物形成。

The BRCA2 homologue Brh2 nucleates RAD51 filament formation at a dsDNA-ssDNA junction.

作者信息

Yang Haijuan, Li Qiubai, Fan Jie, Holloman William K, Pavletich Nikola P

机构信息

Structural Biology Program, Memorial Sloan-Kettering Cancer Center, New York, New York 10021, USA.

出版信息

Nature. 2005 Feb 10;433(7026):653-7. doi: 10.1038/nature03234.

Abstract

The BRCA2 tumour suppressor is essential for the error-free repair of double-strand breaks (DSBs) in DNA by homologous recombination. This is mediated by RAD51, which forms a nucleoprotein filament with the 3' overhanging single-stranded DNA (ssDNA) of the resected DSB, searches for a homologous donor sequence, and catalyses strand exchange with the donor DNA. The 3,418-amino-acid BRCA2 contains eight approximately 30-amino-acid BRC repeats that bind RAD51 (refs 5, 6) and a approximately 700-amino-acid DBD domain that binds ssDNA. The isolated BRC and DBD domains have the opposing effects of inhibiting and stimulating recombination, respectively, and the role of BRCA2 in repair has been unclear. Here we show that a full-length BRCA2 homologue (Brh2) stimulates Rad51-mediated recombination at substoichiometric concentrations relative to Rad51. Brh2 recruits Rad51 to DNA and facilitates the nucleation of the filament, which is then elongated by the pool of free Rad51. Brh2 acts preferentially at a junction between double-stranded DNA (dsDNA) and ssDNA, with strict specificity for the 3' overhang polarity of a resected DSB. These results establish a BRCA2 function in RAD51-mediated DSB repair and explain the loss of this repair capacity in BRCA2-associated cancers.

摘要

BRCA2肿瘤抑制因子对于通过同源重组实现DNA双链断裂(DSB)的无差错修复至关重要。这一过程由RAD51介导,RAD51与被切除DSB的3'端突出单链DNA(ssDNA)形成核蛋白丝,寻找同源供体序列,并催化与供体DNA的链交换。含有3418个氨基酸的BRCA2包含八个约30个氨基酸的BRC重复序列,可结合RAD51(参考文献5、6),以及一个约700个氨基酸的DBD结构域,可结合ssDNA。分离出的BRC和DBD结构域分别具有抑制和刺激重组的相反作用,BRCA2在修复中的作用一直不明确。在此,我们表明,相对于Rad51,全长BRCA2同源物(Brh2)在亚化学计量浓度下可刺激Rad51介导的重组。Brh2将Rad51招募到DNA上,并促进丝状体的成核,然后由游离Rad51池使其延长。Brh2优先作用于双链DNA(dsDNA)和ssDNA之间的连接处,对被切除DSB的3'端突出极性具有严格的特异性。这些结果确立了BRCA2在RAD51介导的DSB修复中的功能,并解释了BRCA2相关癌症中这种修复能力的丧失。

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