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首页> 外文期刊>Journal of Molecular Biology >Bloom's syndrome helicase and Mus81 are required to induce transient double-strand DNA breaks in response to DNA replication stress
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Bloom's syndrome helicase and Mus81 are required to induce transient double-strand DNA breaks in response to DNA replication stress

机译:需要Bloom综合征解旋酶和Mus81来诱导短暂的双链DNA断裂以响应DNA复制压​​力

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摘要

Perturbed DNA replication either activates a cell cycle checkpoint, which halts DNA replication, or decreases the rate of DNA synthesis without activating a checkpoint. Here we report that at low doses, replication inhibitors did not activate a cell cycle checkpoint, but they did activate a process that required functional Bloom's syndrome-associated (BLM) helicase, Mus81 nuclease and ataxia telangiectasia mutated and Rad3-related (ATR) kinase to induce transient double-stranded DNA breaks. The induction of transient DNA breaks was accompanied by dissociation of proliferating cell nuclear antigen (PCNA) and DNA polymerase a from replication forks. In cells with functional BLM, Mus81 and ATR, the transient breaks were promptly repaired and DNA continued to replicate at a slow pace in the presence of replication inhibitors. In cells that lacked BLM, Mus81, or AIR, transient breaks did not form, DNA replication did not resume, and exposure to low doses of replication inhibitors was toxic. These observations suggest that BLM helicase, ATR kinase, and Mus81 nuclease are required to convert perturbed replication forks to DNA breaks when cells encounter conditions that decelerate DNA replication, thereby leading to the rapid repair of those breaks and resumption of DNA replication without incurring DNA damage and without activating a cell cycle checkpoint. Published by Elsevier Ltd.
机译:扰动的DNA复制或者激活细胞周期检查点,从而终止DNA复制,或者降低DNA合成的速度而不激活检查点。在这里我们报告说,在低剂量时,复制抑制剂不会激活细胞周期检查点,但会激活需要功能性布鲁姆综合症相关(BLM)解旋酶,Mus81核酸酶和共济失调毛细血管扩张突变以及Rad3相关(ATR)激酶的过程诱导短暂的双链DNA断裂。瞬时DNA断裂的诱导伴随着复制叉中增殖细胞核抗原(PCNA)和DNA聚合酶a的解离。在具有功能性BLM,Mus81和ATR的细胞中,瞬时断裂被迅速修复,并且在存在复制抑制剂的情况下,DNA继续缓慢复制。在缺乏BLM,Mus81或AIR的细胞中,不会形成瞬时断裂,DNA复制不会恢复,并且暴露于低剂量的复制抑制剂下也是有毒的。这些观察结果表明,当细胞遇到使DNA复制减速的条件时,需要BLM解旋酶,ATR激酶和Mus81核酸酶才能将受干扰的复制叉转化为DNA断裂,从而导致这些断裂的快速修复和DNA复制的恢复而不会引起DNA损伤。并且不激活细胞周期检查点。由Elsevier Ltd.发布

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