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首页> 外文期刊>Journal of Cell Science >RIF1 controls replication initiation and homologous recombination repair in a radiation dose-dependent manner
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RIF1 controls replication initiation and homologous recombination repair in a radiation dose-dependent manner

机译:RIF1以辐射剂量依赖的方式控制复制启动和同源重组修复

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摘要

RIF1 controls both DNA replication timing and the DNA double-strand break (DSB) repair pathway to maintain genome integrity. However, it remains unclear how RIF1 links these two processes following exposure to ionizing radiation (IR). Here, we show that inhibition of homologous recombination repair (HRR) by RIF1 occurs in a dose-dependent manner and is controlled via DNA replication. RIF1 inhibits both DNA end resection and RAD51 accumulation after exposure to high doses of IR. Contrastingly, HRR inhibition by RIF1 is antagonized by BRCA1 after a low-dose IR exposure. At high IR doses, RIF1 suppresses replication initiation by dephosphorylating MCM helicase. Notably, the dephosphorylation of MCM helicase inhibits both DNA end resection and HRR, even without RIF1. Thus, our data show the importance of active DNA replication for HRR and suggest a common suppression mechanism for DNA replication and HRR at high IR doses, both of which are controlled by RIF1.
机译:RIF1控制DNA复制定时和DNA双链断裂(DSB)修复途径以维持基因组完整性。 然而,仍然不明确于接触电离辐射后,RIF1将这两个过程链接到电离辐射(IR)之后。 这里,我们表明RIF1的同源重组修复(HRR)的抑制以剂量依赖性方式发生并通过DNA复制来控制。 在暴露于高剂量的IR后,RIF1抑制DNA结束切除和RAD51积累。 比较地,在低剂量红外暴露后,通过BRCA1拮抗RIF1的HRR抑制。 在高IR剂量下,RIF1通过去磷酸化MCM螺旋酶抑制复制引发。 值得注意的是,即使没有RIF1,MCM Helicase的去磷酸化抑制DNA结束切除和HRR。 因此,我们的数据显示了HRR活性DNA复制的重要性,并提出了DNA复制和HRR在高IR剂量的常见抑制机制,其两者由RIF1控制。

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