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E3泛素连接酶后期促进复合物/细胞周期体(APC/C)在MCPH1-β转导素重复序列包含蛋白2(βTrCP2)-细胞周期蛋白磷酸酶25A(Cdc25A)介导的有丝分裂进入后降解小头畸形相关蛋白1(MCPH1),以确保神经发生。

The E3 ubiquitin ligase APC/C degrades MCPH1 after MCPH1-βTrCP2-Cdc25A-mediated mitotic entry to ensure neurogenesis.

作者信息

Liu Xiaoqian, Zong Wen, Li Tangliang, Wang Yujun, Xu Xingzhi, Zhou Zhong-Wei, Wang Zhao-Qi

机构信息

Leibniz Institute on Aging - Fritz Lipmann Institute (FLI), Jena, Germany.

Institute of Aging Research, School of Medicine, Hangzhou Normal University, Hangzhou, China.

出版信息

EMBO J. 2017 Dec 15;36(24):3666-3681. doi: 10.15252/embj.201694443. Epub 2017 Nov 17.

Abstract

Mutations of microcephalin (MCPH1) can cause the neurodevelopmental disorder primary microcephaly type 1. We previously showed that MCPH1 deletion in neural stem cells results in early mitotic entry that distracts cell division mode, leading to exhaustion of the progenitor pool. Here, we show that MCPH1 interacts with and promotes the E3 ligase βTrCP2 to degrade Cdc25A independent of DNA damage. Overexpression of βTrCP2 or the knockdown of Cdc25A remedies the high mitotic index and rescues the premature differentiation of -deficient neuroprogenitors MCPH1 itself is degraded by APC/C, but not APC/C, in late mitosis and G1 phase. Forced MCPH1 expression causes cell death, underlining the importance of MCPH1 turnover after mitosis. Ectopic expression of Cdh1 leads to premature differentiation of neuroprogenitors, mimicking differentiation defects of -knockout neuroprogenitors. The homeostasis of MCPH1 in association with the ubiquitin-proteasome system ensures mitotic entry independent of cell cycle checkpoint. This study provides a mechanistic understanding of how MCPH1 controls neural stem cell fate and brain development.

摘要

小头畸形蛋白(MCPH1)的突变可导致神经发育障碍1型原发性小头畸形。我们之前表明,神经干细胞中MCPH1的缺失会导致早期有丝分裂进入,从而干扰细胞分裂模式,导致祖细胞池耗竭。在此,我们表明MCPH1与E3连接酶βTrCP2相互作用并促进其降解Cdc25A,且与DNA损伤无关。βTrCP2的过表达或Cdc25A的敲低可纠正高有丝分裂指数,并挽救MCPH1缺陷型神经祖细胞的过早分化。MCPH1自身在有丝分裂后期和G1期被后期促进复合体/细胞周期体(APC/C)的Cdh1亚基而非APC/C的Cdc20亚基降解。强制表达MCPH1会导致细胞死亡,这突出了有丝分裂后MCPH1周转的重要性。Cdh1的异位表达会导致神经祖细胞过早分化,类似于MCPH1敲除神经祖细胞的分化缺陷。MCPH1与泛素-蛋白酶体系统相关的稳态确保了独立于细胞周期检查点的有丝分裂进入。这项研究为MCPH1如何控制神经干细胞命运和大脑发育提供了机制上的理解。

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