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首页> 外文期刊>Human Molecular Genetics >USP1 deubiquitinase maintains phosphorylated CHK1 by limiting its DDB1-dependent degradation.
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USP1 deubiquitinase maintains phosphorylated CHK1 by limiting its DDB1-dependent degradation.

机译:USP1去泛素化酶通过限制其依赖DDB1的降解来维持磷酸化的CHK1。

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摘要

The maintenance of genetic stability depends on the fine-tuned initiation and termination of pathways involved in cell cycle checkpoints and DNA repair. Here, we describe a new pathway that regulates checkpoint kinase 1 (CHK1) activity, a key element controlling both checkpoints and DNA repair. We show that the ubiquitin-specific peptidase 1 (USP1) deubiquitinase participates in the maintenance of both total and phosphorylated levels of CHK1 in response to genotoxic stress. We establish that USP1 depletion stimulates the damage-specific DNA-binding protein 1-dependent degradation of phosphorylated CHK1 in both a monoubiquitinylated Fanconi anaemia, complementation group D2 (FANCD2)-dependent and -independent manner. Our data support the existence of a circuit in which CHK1 activates checkpoints, DNA repair and proliferating cell nuclear antigen and FANCD2 monoubiquitinylation. The latter two events, in turn, switch off activated CHK1 by negative feedback inhibition, which contributes to the downregulation of the DNA damage response. This pathway, which is compromised in the cancer-prone disease Fanconi anaemia (FA), likely contributes to the hypersensitivity of cells from FA patients to DNA damage and to the clinical phenotype of the syndrome; it may also represent a pharmacological target to improve patient care and develop new cancer therapies.
机译:遗传稳定性的维持取决于细胞周期检查点和DNA修复所涉及途径的微调起始和终止。在这里,我们描述了一种调节检查点激酶1(CHK1)活性的新途径,这是控制检查点和DNA修复的关键要素。我们显示泛素特异性肽酶1(USP1)去泛素酶参与CHK1的总和磷酸化水平的维护,以应对遗传毒性压力。我们建立USP1耗竭刺激单泛素化的范可尼贫血,互补组D2(FANCD2)依赖和独立的方式中磷酸化CHK1的损伤特异性DNA结合蛋白1依赖性降解。我们的数据支持CHK1激活检查点,DNA修复和增殖细胞核抗原以及FANCD2单泛素化的电路的存在。后两个事件又通过负反馈抑制来关闭活化的CHK1,这有助于DNA损伤反应的下调。该途径在易患癌症的范可尼贫血(FA)中受损,可能导致FA患者的细胞对DNA损伤的超敏性以及该综合征的临床表型。它也可能代表改善患者护理和开发新的癌症疗法的药理学目标。

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