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Cep57-Cep63 相互作用对 Cep152 正确募集和中心体复制的要求。

Requirement of the Cep57-Cep63 Interaction for Proper Cep152 Recruitment and Centriole Duplication.

机构信息

Laboratory of Metabolism, National Cancer Institute, National Institutes of Health, Bethesda, Maryland, USA.

Division of Magnetic Resonance, Korea Basic Science Institute, Ochang, Republic of Korea.

出版信息

Mol Cell Biol. 2020 Apr 28;40(10). doi: 10.1128/MCB.00535-19.

Abstract

Cep57 has been characterized as a component of a pericentriolar complex containing Cep63 and Cep152. Interestingly, Cep63 and Cep152 self-assemble into a pericentriolar cylindrical architecture, and this event is critical for the orderly recruitment of Plk4, a key regulator of centriole duplication. However, the way in which Cep57 interacts with the Cep63-Cep152 complex and contributes to the structure and function of Cep63-Cep152 self-assembly remains unknown. We demonstrate that Cep57 interacts with Cep63 through N-terminal motifs and associates with Cep152 via Cep63. Three-dimensional structured illumination microscopy (3D-SIM) analyses suggested that the Cep57-Cep63-Cep152 complex is concentrically arranged around a centriole in a Cep57-in and Cep152-out manner. Cep57 mutant cells defective in Cep63 binding exhibited improper Cep63 and Cep152 localization and impaired Sas6 recruitment for procentriole assembly, proving the significance of the Cep57-Cep63 interaction. Intriguingly, Cep63 fused to a microtubule (MT)-binding domain of Cep57 functioned in concert with Cep152 to assemble around stabilized MTs Thus, Cep57 plays a key role in architecting the Cep63-Cep152 assembly around centriolar MTs and promoting centriole biogenesis. This study may offer a platform to investigate how the organization and function of the pericentriolar architecture are altered by disease-associated mutations found in the Cep57-Cep63-Cep152 complex.

摘要

Cep57 被鉴定为一个含有 Cep63 和 Cep152 的中心体周围复合物的组成部分。有趣的是,Cep63 和 Cep152 自身组装成一个中心体周围的圆柱形结构,这个事件对于 Plk4 的有序募集至关重要,Plk4 是中心体复制的关键调节因子。然而,Cep57 与 Cep63-Cep152 复合物相互作用的方式以及对 Cep63-Cep152 自身组装的结构和功能的贡献仍然未知。我们证明 Cep57 通过 N 端基序与 Cep63 相互作用,并通过 Cep63 与 Cep152 相关联。三维结构照明显微镜(3D-SIM)分析表明,Cep57-Cep63-Cep152 复合物以 Cep57 内和 Cep152 外的方式同心地围绕着一个中心体排列。Cep57 突变细胞中 Cep63 结合缺陷表现出 Cep63 和 Cep152 定位不当以及 Sas6 募集用于前中心体组装受损,证明了 Cep57-Cep63 相互作用的重要性。有趣的是,Cep63 融合到 Cep57 的微管(MT)结合结构域与 Cep152 协同组装在稳定的 MT 周围。因此,Cep57 在围绕中心体 MT 构建 Cep63-Cep152 组装体并促进中心体发生中发挥关键作用。这项研究可能为研究 Cep57-Cep63-Cep152 复合物中发现的与疾病相关的突变如何改变中心体周围结构的组织和功能提供了一个平台。

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