Tudzarova Slavica, Mulholland Paul, Dey Ayona, Stoeber Kai, Okorokov Andrei L, Williams Gareth H
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.
Cell Cycle. 2016 Nov;15(21):2958-2972. doi: 10.1080/15384101.2016.1231281. Epub 2016 Sep 9.
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.
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。