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选择性化学交联揭示了一个 Cep57-Cep63-Cep152 中心体复合物。

Selective chemical crosslinking reveals a Cep57-Cep63-Cep152 centrosomal complex.

机构信息

Institute of Chemical Sciences and Engineering (ISIC), Ecole Polytechnique Fédérale de Lausanne (EPFL), Lausanne 1015, Switzerland.

出版信息

Curr Biol. 2013 Feb 4;23(3):265-70. doi: 10.1016/j.cub.2012.12.030. Epub 2013 Jan 17.

Abstract

The centrosome functions as the main microtubule-organizing center of animal cells and is crucial for several fundamental cellular processes. Abnormalities in centrosome number and composition correlate with tumor progression and other diseases. Although proteomic studies have identified many centrosomal proteins, their interactions are incompletely characterized. The lack of information on the precise localization and interaction partners for many centrosomal proteins precludes comprehensive understanding of centrosome biology. Here, we utilize a combination of selective chemical crosslinking and superresolution microscopy to reveal novel functional interactions among a set of 31 centrosomal proteins. We reveal that Cep57, Cep63, and Cep152 are parts of a ring-like complex localizing around the proximal end of centrioles. Furthermore, we identify that STIL, together with HsSAS-6, resides at the proximal end of the procentriole, where the cartwheel is located. Our studies also reveal that the known interactors Cep152 and Plk4 reside in two separable structures, suggesting that the kinase Plk4 contacts its substrate Cep152 only transiently, at the centrosome or within the cytoplasm. Our findings provide novel insights into protein interactions critical for centrosome biology and establish a toolbox for future studies of centrosomal proteins.

摘要

中心体作为动物细胞的主要微管组织中心,对于几个基本的细胞过程至关重要。中心体数量和组成的异常与肿瘤进展和其他疾病相关。尽管蛋白质组学研究已经鉴定出许多中心体蛋白,但它们的相互作用尚未完全描述。由于缺乏许多中心体蛋白的精确定位和相互作用伙伴的信息,因此无法全面了解中心体生物学。在这里,我们利用选择性化学交联和超分辨率显微镜的组合,揭示了一组 31 种中心体蛋白之间的新的功能相互作用。我们发现 Cep57、Cep63 和 Cep152 是定位于中心粒近端的环状复合物的一部分。此外,我们还确定了 STIL 与 HsSAS-6 一起位于前中心粒的近端,即车轮辐条所在的位置。我们的研究还表明,已知的相互作用蛋白 Cep152 和 Plk4 位于两个可分离的结构中,这表明激酶 Plk4 仅在中心体或细胞质中与它的底物 Cep152 短暂接触。我们的发现为中心体生物学的关键蛋白相互作用提供了新的见解,并为未来的中心体蛋白研究建立了一个工具包。

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