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Differential regulation of the cellular response to DNA double-strand breaks in G1

机译:G1中对DNA双链断裂的细胞反应的差异调节

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Double-strand breaks (DSBs) are potentially lethal DNA lesions that can be repaired by either homologous recombination (HR) or nonhomologous end-joining (NHEJ). We show that DSBs induced by ionizing radiation (IR) are efficiently processed for HR and bound by Rfa1 during G1, while endonuclease-induced breaks are recognized by Rfa1 only after the cell enters S phase. This difference is dependent on the DNA end-binding Yku70/Yku80 complex. Cell-cycle regulation is also observed in the DNA damage checkpoint response. Specifically, the 9-1-1 complex is required in G1 cells to recruit the Ddc2 checkpoint protein to damaged DNA, while, upon entry into S phase, the cyclin-dependent kinase Cdc28 and the 9-1-1 complex both serve to recruit Ddc2 to foci. Together, these results demonstrate that the DNA repair machinery distinguishes between different types of damage in G1, which translates into different modes of checkpoint activation in G1 and S/G2 cells.
机译:双链断裂(DSB)是潜在的致命DNA损伤,可以通过同源重组(HR)或非同源末端连接(NHEJ)修复。我们显示电离辐射(IR)诱导的DSB被有效地处理为HR,并在G1期间受Rfa1约束,而核酸内切酶诱导的断裂只有在细胞进入S期后才被Rfa1识别。该差异取决于DNA末端结合Yku70 / Yku80复合物。在DNA损伤检查点反应中也观察到细胞周期调节。具体来说,G1细胞需要9-1-1复合物才能将Ddc2检查点蛋白募集到受损的DNA,而进入S期后,细胞周期蛋白依赖性激酶Cdc28和9-1-1复合物都可以募集Ddc2转为焦点。总之,这些结果表明,DNA修复机制可以区分G1中不同类型的损伤,从而转化为G1和S / G2细胞中检查点激活的不同模式。

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