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CCDC57 与微管和小头畸形蛋白 CEP63 合作,调节中心粒复制和有丝分裂进程。

CCDC57 Cooperates with Microtubules and Microcephaly Protein CEP63 and Regulates Centriole Duplication and Mitotic Progression.

机构信息

Department of Molecular Biology and Genetics, Koç University, Sarıyer, İstanbul 34450, Turkey.

Instituto Gulbenkian de Ciência, Rua da Quinta Grande 6, Oeiras 2780-156, Portugal.

出版信息

Cell Rep. 2020 May 12;31(6):107630. doi: 10.1016/j.celrep.2020.107630.

Abstract

Centrosomes function in key cellular processes ranging from cell division to cellular signaling. Their dysfunction is linked to cancer and developmental disorders. Here, we identify CCDC57 as a pleiotropic regulator of centriole duplication, mitosis, and ciliogenesis. Combining proximity mapping with superresolution imaging, we show that CCDC57 localizes to the proximal end of centrioles and interacts with the microcephaly protein CEP63, centriolar satellite proteins, and microtubules. Loss of CCDC57 causes defects in centriole duplication and results in a failure to localize CEP63 and CEP152 to the centrosome. Additionally, CCDC57 depletion perturbs mitotic progression both in wild-type and centriole-less cells. Importantly, its centrosome-targeting region is required for its interaction with CEP63 and functions during centriole duplication and cilium assembly, whereas the microtubule-targeting region is required for its mitotic functions. Together, our results identify CCDC57 as a critical interface between centrosome and microtubule-mediated cellular processes that are deregulated in microcephaly.

摘要

中心体在细胞分裂到细胞信号等关键细胞过程中发挥作用。它们的功能障碍与癌症和发育障碍有关。在这里,我们确定 CCDC57 是中心体复制、有丝分裂和纤毛发生的多效调节因子。通过邻近图谱分析与超分辨率成像相结合,我们发现 CCDC57 定位于中心体的近端,并与小头畸形蛋白 CEP63、中心粒卫星蛋白和微管相互作用。CCDC57 的缺失会导致中心体复制缺陷,并导致 CEP63 和 CEP152 无法定位到中心体。此外,CCDC57 的耗竭会干扰有丝分裂的进程,无论是在野生型细胞还是中心粒缺失的细胞中。重要的是,其中心体靶向区域是与 CEP63 相互作用所必需的,并且在中心体复制和纤毛组装过程中发挥作用,而微管靶向区域是其有丝分裂功能所必需的。总之,我们的研究结果表明 CCDC57 是中心体和微管介导的细胞过程之间的一个关键界面,在小头畸形中这些过程被失调。

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