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S 期的 DNA 损伤通过 p21 表达介导后续 G1 期的增殖-静止决定。

DNA damage during S-phase mediates the proliferation-quiescence decision in the subsequent G1 via p21 expression.

机构信息

Division of Cancer Biology, The Institute of Cancer Research, 237 Fulham Road, London SW3 6JB, UK.

Department of Computational Systems Medicine, Imperial College, South Kensington Campus, London SW7 2AZ, UK.

出版信息

Nat Commun. 2017 Mar 20;8:14728. doi: 10.1038/ncomms14728.

Abstract

Following DNA damage caused by exogenous sources, such as ionizing radiation, the tumour suppressor p53 mediates cell cycle arrest via expression of the CDK inhibitor, p21. However, the role of p21 in maintaining genomic stability in the absence of exogenous DNA-damaging agents is unclear. Here, using live single-cell measurements of p21 protein in proliferating cultures, we show that naturally occurring DNA damage incurred over S-phase causes p53-dependent accumulation of p21 during mother G2- and daughter G1-phases. High p21 levels mediate G1 arrest via CDK inhibition, yet lower levels have no impact on G1 progression, and the ubiquitin ligases CRL4 and SCF couple to degrade p21 prior to the G1/S transition. Mathematical modelling reveals that a bistable switch, created by CRL4, promotes irreversible S-phase entry by keeping p21 levels low, preventing premature S-phase exit upon DNA damage. Thus, we characterize how p21 regulates the proliferation-quiescence decision to maintain genomic stability.

摘要

在受到外源因素(如电离辐射)引起的 DNA 损伤后,肿瘤抑制因子 p53 通过表达 CDK 抑制剂 p21 介导细胞周期停滞。然而,在没有外源 DNA 损伤剂的情况下,p21 在维持基因组稳定性方面的作用尚不清楚。在这里,我们使用增殖培养物中 p21 蛋白的活单细胞测量,表明 S 期发生的自然发生的 DNA 损伤导致母 G2 和子 G1 期 p53 依赖性 p21 积累。高 p21 水平通过 CDK 抑制介导 G1 期阻滞,但低水平对 G1 期进程没有影响,泛素连接酶 CRL4 和 SCF 在前 G1/S 转换时耦联降解 p21。数学模型表明,由 CRL4 创建的双稳态开关通过保持低水平的 p21 水平来促进不可逆的 S 期进入,防止在 DNA 损伤时过早退出 S 期。因此,我们描述了 p21 如何调节增殖-静止决策以维持基因组稳定性。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/8887/5364389/9f575e4e7262/ncomms14728-f1.jpg

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