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首页> 外文期刊>Cell Reports >A Meiotic Checkpoint Alters Repair Partner Bias to Permit Inter-sister Repair of Persistent DSBs
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A Meiotic Checkpoint Alters Repair Partner Bias to Permit Inter-sister Repair of Persistent DSBs

机译:减数分裂检查站更改维修合作伙伴的偏见,以允许对持久性DSB进行姐妹间维修

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Accurate meiotic chromosome segregation critically depends on the formation of inter-homolog crossovers initiated by double-strand breaks (DSBs). Inaccuracies in this process can drive aneuploidy and developmental defects, but how meiotic cells are protected from unscheduled DNA breaks remains unexplored. Here we define a checkpoint response to persistent meiotic DSBs in C. elegans that phosphorylates the synaptonemal complex (SC) to switch repair partner from the homolog to the sister chromatid. A key target of this response is the core SC component SYP-1, which is phosphorylated in response to ionizing radiation (IR) or unrepaired meiotic DSBs. Failure to phosphorylate (syp-16A) or dephosphorylate (syp-16D) SYP-1 in response to DNA damage results in chromosome non-dysjunction, hyper-sensitivity to IR-induced DSBs, and synthetic lethality with loss of brc-1BRCA1. Since BRC-1 is required for inter-sister repair, these observations reveal that checkpoint-dependent SYP-1 phosphorylation safeguards the germline against persistent meiotic DSBs by channelling repair to the sister chromatid.
机译:准确的减数分裂染色体分离关键取决于双链断裂(DSB)引发的同源同源交叉的形成。该过程中的错误会导致非整倍性和发育缺陷,但是如何保护减数分裂细胞不受计划外的DNA断裂的影响尚待探索。在这里,我们定义了对秀丽隐杆线虫中持久性减数分裂DSBs的检查点反应,该反应使联会复合体(SC)磷酸化,从而将修复伴侣从同系物转移到染色单体。此响应的关键目标是核心SC组件SYP-1,该组件响应电离辐射(IR)或未修复的减数分裂DSB而被磷酸化。未能对DNA损伤进行磷酸化(syp-16A)或去磷酸化(syp-16D)SYP-1会导致染色体非连接异常,对IR诱导的DSB过敏,合成杀伤力以及brc-1BRCA1的丧失。由于姐妹间修复需要BRC-1,因此这些观察结果表明,依赖检查点的SYP-1磷酸化通过将修复引导至姐妹染色单体来保护种系免受持久性减数分裂DSB的侵害。

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