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肿瘤抑制因子Cdkn3通过调节Mps1的中心体稳定性来维持中心体数量正常。

The Tumor Suppressor Cdkn3 Is Required for Maintaining the Proper Number of Centrosomes by Regulating the Centrosomal Stability of Mps1.

作者信息

Srinivas Vinayaka, Kitagawa Mayumi, Wong Jasmine, Liao Pei-Ju, Lee Sang Hyun

机构信息

Program in Cancer and Stem Cell Biology, Duke-NUS Graduate Medical School, 8 College Road, Singapore 169857, Singapore.

Program in Cancer and Stem Cell Biology, Duke-NUS Graduate Medical School, 8 College Road, Singapore 169857, Singapore.

出版信息

Cell Rep. 2015 Nov 24;13(8):1569-77. doi: 10.1016/j.celrep.2015.10.039. Epub 2015 Nov 12.

Abstract

Supernumerary centrosomes promote the assembly of abnormal spindles in many human cancers. The observation that modest changes in the centrosomal levels of Mps1 kinase can cause centrosome overduplication in human cells suggests the existence of a regulatory system that may tightly control its centrosomal stability. Here, we show that Cdkn3, a Cdk-associated phosphatase, prevents Mps1-mediated centrosome overduplication. We identify Cdkn3 as a direct binding partner of Mps1. The interaction between Mps1 and Cdkn3 is required for Mps1 to recruit Cdkn3 to centrosomes. Subsequently, Mps1-bound Cdkn3 forms a regulatory system that controls the centrosomal levels of Mps1 through proteasome-mediated degradation and thereby prevents Mps1-mediated centrosome overduplication. Conversely, knockdown of Cdkn3 stabilizes Mps1 at centrosomes, which promotes centrosome overduplication. We suggest that Mps1 and Cdkn3 form a self-regulated feedback loop at centrosomes to tightly control the centrosomal levels of Mps1, which prevents centrosome overduplication in human cells.

摘要

多余的中心体在许多人类癌症中会促进异常纺锤体的组装。在人类细胞中,中心体水平的微小变化会导致中心体过度复制,这一现象表明存在一个可能会严格控制其中心体稳定性的调节系统。在此,我们表明,细胞周期蛋白依赖性激酶相关磷酸酶Cdkn3可防止Mps1介导的中心体过度复制。我们确定Cdkn3是Mps1的直接结合伴侣。Mps1与Cdkn3之间的相互作用是Mps1将Cdkn3招募到中心体所必需的。随后,与Mps1结合的Cdkn3形成一个调节系统,该系统通过蛋白酶体介导的降解来控制Mps1的中心体水平,从而防止Mps1介导的中心体过度复制。相反,敲低Cdkn3会使Mps1在中心体处稳定下来,从而促进中心体过度复制。我们认为,Mps1和Cdkn3在中心体处形成一个自我调节的反馈环,以严格控制Mps1的中心体水平,从而防止人类细胞中的中心体过度复制。

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