首页> 外文期刊>Oncogene >RAD52 inactivation is synthetically lethal with deficiencies in BRCA1 and PALB2 in addition to BRCA2 through RAD51-mediated homologous recombination
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RAD52 inactivation is synthetically lethal with deficiencies in BRCA1 and PALB2 in addition to BRCA2 through RAD51-mediated homologous recombination

机译:通过RAD51介导的同源重组,除了BRCA2之外,RAD52失活对BRCA1和PALB2的合成也是致命的。

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Synthetic lethality is an approach to study selective cell killing based on genotype. Previous work in our laboratory has shown that loss of RAD52 is synthetically lethal with BRCA2 deficiency, while exhibiting no impact on cell growth and viability in BRCA2-proficient cells. We now show that this same synthetically lethal relationship is evident in cells with deficiencies in BRCA1 or PALB2, which implicates BRCA1, PALB2 and BRCA2 in an epistatic relationship with one another. When RAD52 was depleted in BRCA1- or PALB2-deficient cells, a severe reduction in plating efficiency was observed, with many abortive attempts at cell division apparent in the double-depleted background. In contrast, when RAD52 was depleted in a BRCA1- or PALB2-wildtype background, a negligible decrease in colony survival was observed. The frequency of ionizing radiation-induced RAD51 foci formation and double-strand break-induced homologous recombination (HR) was decreased by 3- and 10-fold, respectively, when RAD52 was knocked down in BRCA1- or PALB2-depleted cells, with minimal effect in BRCA1- or PALB2-proficient cells. RAD52 function was independent of BRCA1 status, as evidenced by the lack of any defect in RAD52 foci formation in BRCA1-depleted cells. Collectively, these findings suggest that RAD52 is an alternative repair pathway of RAD51-mediated HR, and a target for therapy in cells deficient in the BRCA1鈥揚ALB2鈥揃RCA2 repair pathway.
机译:合成致死性是研究基于基因型的选择性细胞杀伤的方法。我们实验室先前的工作表明,RAD52的丧失在BRCA2缺乏的情况下具有致命的致命性,而对BRCA2熟练细胞的细胞生长和活力没有影响。我们现在表明,在BRCA1或PALB2缺陷的细胞中,这种相同的合成致死关系很明显,这意味着BRCA1,PALB2和BRCA2彼此之间具有上位性关系。当在缺乏BRCA1或PALB2的细胞中耗尽RAD52时,观察到铺板效率的严重降低,在双倍缺失的背景下,许多细胞分裂的失败尝试显而易见。相反,当在BRCA1或PALB2野生型背景中消耗RAD52时,观察到的菌落存活率可忽略不计。当在BRCA1或PALB2耗尽的细胞中敲除RAD52时,电离辐射诱导的RAD51灶形成和双链断裂诱导的同源重组(HR)的频率分别降低了3倍和10倍。在BRCA1或PALB2精通细胞中发挥作用。 RAD52的功能与BRCA1的状态无关,这一点可以证明,在缺乏BRCA1的细胞中RAD52灶形成没有任何缺陷。总的来说,这些发现表明RAD52是RAD51介导的HR的另一种修复途径,并且是针对缺乏BRCA1'ALB2'RCA2修复途径的细胞进行治疗的靶标。

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