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Preferential localization of hyperphosphorylated replication protein A to double-strand break repair and checkpoint complexes upon DNA damage

机译:DNA受损时,高磷酸化复制蛋白A优先定位于双链断裂修复和检查点复合物

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摘要

RPA (replication protein A) is an essential factor for DNA DSB (double-strand break) repair and cell cycle checkpoint activation. The 32 kDa subunit of RPA undergoes hyperphosphorylation in response to cellular genotoxic insults. However, the potential involvement of hyperphosphorylated RPA in DSB repair and checkpoint activation remains unclear. Using co-immunoprecipitation assays, we showed that cellular interaction of RPA with two DSB repair factors, Rad51 and Rad52, was predominantly mediated by the hyperphosphorylated species of RPA in cells after UV and camptothecin treatment. Moreover, Rad51 and Rad52 displayed higher affinity for the hyperphosphorylated RPA than native RPA in an in vitro binding assay. Checkpoint kinase ATR (ataxia telangiectasia mutated and Rad3-related) also interacted more efficiently with the hyperphosphorylated RPA than with native RPA following DNA damage. Consistently, immunofluorescence microscopy demonstrated that the hyperphosphorylated RPA was able to co-localize with Rad52 and ATR to form significant nuclear foci in cells. Our results suggest that hyperphosphorylated RPA is preferentially localized to DSB repair and the DNA damage checkpoint complexes in response to DNA damage.
机译:RPA(复制蛋白A)是DNA DSB(双链断裂)修复和细胞周期检查点激活的必要因素。 RPA的32 kDa亚基会因细胞遗传毒性损伤而发生过度磷酸化。但是,尚不清楚磷酸化RPA是否参与DSB修复和检查点激活。使用免疫共沉淀试验,我们发现RPA与两种DSB修复因子Rad51和Rad52的细胞相互作用主要是由UV和喜树碱处理后细胞中RPA的高磷酸化物质介导的。此外,在体外结合试验中,Rad51和Rad52对高磷酸化RPA的亲和力高于天然RPA。 DNA损伤后,检查点激酶ATR(共济失调的毛细血管扩张突变和Rad3相关)也比高磷酸化RPA更有效地与天然RPA相互作用。一致地,免疫荧光显微镜显示,高磷酸化的RPA能够与Rad52和ATR共定位,从而在细胞中形成明显的核灶。我们的结果表明,过度磷酸化的RPA优先定位于DSB修复和DNA损伤检查点复合物,以响应DNA损伤。

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