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p53 控制 CDC7 的水平,以在基因毒性应激时加强 G1 期细胞周期阻滞。

p53 controls CDC7 levels to reinforce G1 cell cycle arrest upon genotoxic stress.

作者信息

Tudzarova Slavica, Mulholland Paul, Dey Ayona, Stoeber Kai, Okorokov Andrei L, Williams Gareth H

机构信息

a Wolfson Institute for Biomedical Research, Division of Medicine, University College London , London , UK.

b Division of Endocrinology, David Geffen School of Medicine, University of California Los Angeles , Los Angeles , CA , USA.

出版信息

Cell Cycle. 2016 Nov;15(21):2958-2972. doi: 10.1080/15384101.2016.1231281. Epub 2016 Sep 9.

Abstract

DNA replication initiation is a key event in the cell cycle, which is dependent on 2 kinases - CDK2 and CDC7. Here we report a novel mechanism in which p53 induces G1 checkpoint and cell cycle arrest by downregulating CDC7 kinase in response to genotoxic stress. We demonstrate that p53 controls CDC7 stability post-transcriptionally via miR-192/215 and post-translationally via Fbxw7β E3 ubiquitin ligase. The p53-dependent pathway of CDC7 downregulation is interlinked with the p53-p21-CDK2 pathway, as p21-mediated inhibition of CDK2-dependent phosphorylation of CDC7 on Thr376 is required for GSK3ß-phosphorylation and Fbxw7ß-dependent degradation of CDC7. Notably, sustained oncogenic high levels of active CDC7 exert a negative feedback onto p53, leading to unrestrained S-phase progression and accumulation of DNA damage. Thus, p53-dependent control of CDC7 levels is essential for blocking G1/S cell-cycle transition upon genotoxic stress, thereby safeguarding the genome from instability and thus representing a novel general stress response.

摘要

DNA复制起始是细胞周期中的一个关键事件,它依赖于两种激酶——CDK2和CDC7。在此,我们报告一种新机制,即p53在基因毒性应激反应中通过下调CDC7激酶来诱导G1期检查点和细胞周期停滞。我们证明,p53通过miR-192/215在转录后控制CDC7的稳定性,并通过Fbxw7β E3泛素连接酶在翻译后控制其稳定性。CDC7下调的p53依赖途径与p53-p21-CDK2途径相互关联,因为GSK3β磷酸化和Fbxw7β依赖的CDC7降解需要p21介导的对CDC7苏氨酸376位点上CDK2依赖磷酸化的抑制。值得注意的是,持续的致癌高水平活性CDC7对p53产生负反馈,导致不受控制的S期进展和DNA损伤积累。因此,p53依赖的CDC7水平控制对于在基因毒性应激时阻断G1/S细胞周期转换至关重要,从而保护基因组免于不稳定,因此代表一种新的一般应激反应。

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