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PHF2 regulates homology-directed DNA repair by controlling the resection of DNA double strand breaks

机译:PHF2通过控制DNA双链断裂的切除来调节同源性DNA修复

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摘要

Post-translational histone modifications and chromatin remodelling play a critical role controlling the integrity of the genome. Here, we identify histone lysine demethylase PHF2 as a novel regulator of the DNA damage response by regulating DNA damage-induced focus formation of 53BP1 and BRCA1, critical factors in the pathway choice for DNA double strand break repair. PHF2 knockdown leads to impaired BRCA1 focus formation and delays the resolution of 53BP1 foci. Moreover, irradiation-induced RPA phosphorylation and focus formation, as well as localization of CtIP, required for DNA end resection, to sites of DNA lesions are affected by depletion of PHF2. These results are indicative of a defective resection of double strand breaks and thereby an impaired homologous recombination upon PHF2 depletion. In accordance with these data, Rad51 focus formation and homology-directed double strand break repair is inhibited in cells depleted for PHF2. Importantly, we demonstrate that PHF2 knockdown decreases CtIP and BRCA1 protein and mRNA levels, an effect that is dependent on the demethylase activity of PHF2. Furthermore, PHF2-depleted cells display genome instability and are mildly sensitive to the inhibition of PARP. Together these results demonstrate that PHF2 promotes DNA repair by homologous recombination by controlling CtIP-dependent resection of double strand breaks.
机译:翻译后组蛋白修饰和染色质重塑起到控制基因组完整性的关键作用。在此,通过调节DNA损伤诱导的53bp1和BRCA1的焦点形成,将组蛋白赖氨酸脱甲酶PHF2鉴定为DNA损伤响应的新型调节器,DNA双链断裂修复的途径选择中的关键因素。 PHF2敲低导致BRCA1聚焦形成受损,延迟53bp1焦点的分辨率。此外,辐射诱导的RPA磷酸化和灶形成,以及CTIP的定位,对DNA末端切除需要,对DNA损伤的位点被PHF2耗尽的影响。这些结果表明双链断裂的缺陷切除,从而在pHF2耗尽时造成的同源重组受损。根据这些数据,在为PHF2耗尽的细胞中抑制了RAD51聚焦形成和同源定向双链断裂修复。重要的是,我们证明PHF2敲低降低CTIP和BRCA1蛋白和mRNA水平,其效果取决于pHF2的去甲基酶活性。此外,PHF2耗尽的细胞显示基因组不稳定性,对PARP的抑制温和地敏感。这些结果一起表明PHF2通过通过控制双链断裂的CTIP依赖性切除,通过同源重组促进DNA修复。

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