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CDK1 phosphorylates WRN at collapsed replication forks

机译:CDK1在折叠前叉处使WRN磷酸化

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摘要

Regulation of end-processing is critical for accurate repair and to switch between homologous recombination (HR) and non-homologous end joining (NHEJ). End resection is a two-stage process but very little is known about regulation of the long-range resection, especially in humans. WRN participates in one of the two alternative long-range resection pathways mediated by DNA2 or EXO1. Here we demonstrate that phosphorylation of WRN by CDK1 is essential to perform DNA2-dependent end resection at replication-related DSBs, promoting HR, replication recovery and chromosome stability. Mechanistically, S1133 phosphorylation of WRN is dispensable for relocalization in foci but is involved in the interaction with the MRE11 complex. Loss of WRN phosphorylation negatively affects MRE11 foci formation and acts in a dominant negative manner to prevent long-range resection altogether, thereby licensing NHEJ at collapsed forks. Collectively, we unveil a CDK1-dependent regulation of the WRN-DNA2-mediated resection and identify an undescribed function of WRN as a DSB repair pathway switch.
机译:最终加工的调节对于准确修复以及在同源重组(HR)和非同源末端连接(NHEJ)之间切换至关重要。末端切除术分为两个阶段,但对远距离切除术的调控知之甚少,尤其是在人类中。 WRN参与了由DNA2或EXO1介导的两种替代性远距离切除途径之一。在这里,我们证明CDK1对WRN的磷酸化对于在复制相关的DSBs上进行依赖于DNA2的末端切除,促进HR,复制恢复和染色体稳定性至关重要。从机制上讲,WRN的S1133磷酸化对于病灶中的重新定位是必不可少的,但它参与了与MRE11复合物的相互作用。 WRN磷酸化的丧失对MRE11灶的形成产生负面影响,并以显性的负面方式阻止了长距离切除,从而使NHEJ陷于塌叉。总的来说,我们揭示了WRN-DNA2介导的切除的CDK1依赖性调节,并确定了WRN作为DSB修复途径转换的未描述功能。

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