Variants of the human RAD52 gene confer defects in ionizing radiation resistance and homologous recombination repair in budding yeast.

IF 4.1 3区 生物学 Q2 CELL BIOLOGY
Alissa D Clear, Glenn M Manthey, Olivia Lewis, Isabelle Y Lopez, Rossana Rico, Shannon Owens, M Cristina Negritto, Elise W Wolf, Jason Xu, Nikola Kenjić, J Jefferson P Perry, Aaron W Adamson, Susan L Neuhausen, Adam M Bailis
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引用次数: 2

Abstract

RAD52 is a structurally and functionally conserved component of the DNA double-strand break (DSB) repair apparatus from budding yeast to humans. We recently showed that expressing the human gene, HsRAD52 in rad52 mutant budding yeast cells can suppress both their ionizing radiation (IR) sensitivity and homologous recombination repair (HRR) defects. Intriguingly, we observed that HsRAD52 supports DSB repair by a mechanism of HRR that conserves genome structure and is independent of the canonical HR machinery. In this study we report that naturally occurring variants of HsRAD52, one of which suppresses the pathogenicity of BRCA2 mutations, were unable to suppress the IR sensitivity and HRR defects of rad52 mutant yeast cells, but fully suppressed a defect in DSB repair by single-strand annealing (SSA). This failure to suppress both IR sensitivity and the HRR defect correlated with an inability of HsRAD52 protein to associate with and drive an interaction between genomic sequences during DSB repair by HRR. These results suggest that HsRAD52 supports multiple, distinct DSB repair apparatuses in budding yeast cells and help further define its mechanism of action in HRR. They also imply that disruption of HsRAD52-dependent HRR in BRCA2-defective human cells may contribute to protection against tumorigenesis and provide a target for killing BRCA2-defective cancers.

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人类RAD52基因的变异使出芽酵母的电离辐射抗性和同源重组修复缺陷。
RAD52是一个结构和功能保守的DNA双链断裂(DSB)修复装置的组成部分,从萌芽酵母到人类。我们最近发现,在rad52突变体芽殖酵母细胞中表达人类基因HsRAD52可以抑制其电离辐射(IR)敏感性和同源重组修复(HRR)缺陷。有趣的是,我们观察到HsRAD52通过HRR机制支持DSB修复,该机制保存基因组结构,独立于规范的HR机制。在这项研究中,我们报道了自然发生的HsRAD52变异,其中一种抑制BRCA2突变的致病性,不能抑制rad52突变酵母细胞的IR敏感性和HRR缺陷,但完全抑制了单链退火(SSA)修复DSB的缺陷。这种抑制IR敏感性和HRR缺陷的失败与HsRAD52蛋白在HRR修复DSB过程中无法与基因组序列相关联并驱动其相互作用相关。这些结果表明,HsRAD52在出芽酵母细胞中支持多种不同的DSB修复装置,并有助于进一步确定其在HRR中的作用机制。他们还暗示,brca2缺陷人类细胞中hsrad52依赖性HRR的破坏可能有助于防止肿瘤发生,并提供杀死brca2缺陷癌症的靶标。
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来源期刊
Microbial Cell
Microbial Cell Multiple-
CiteScore
6.40
自引率
0.00%
发文量
32
审稿时长
12 weeks
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