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中心粒卫星是中心粒蛋白的中心粒聚集物。

Centriolar satellites are acentriolar assemblies of centrosomal proteins.

机构信息

Cancer Research UK Cambridge Institute, Li Ka Shing Centre, University of Cambridge, Cambridge, UK.

MRC Laboratory of Molecular Biology, Cambridge Biomedical Campus, Cambridge, UK.

出版信息

EMBO J. 2019 Jul 15;38(14):e101082. doi: 10.15252/embj.2018101082. Epub 2019 Jun 3.

Abstract

Centrioles are core structural elements of both centrosomes and cilia. Although cytoplasmic granules called centriolar satellites have been observed around these structures, lack of a comprehensive inventory of satellite proteins impedes our understanding of their ancestry. To address this, we performed mass spectrometry (MS)-based proteome profiling of centriolar satellites obtained by affinity purification of their key constituent, PCM1, from sucrose gradient fractions. We defined an interactome consisting of 223 proteins, which showed striking enrichment in centrosome components. The proteome also contained new structural and regulatory factors with roles in ciliogenesis. Quantitative MS on whole-cell and centriolar satellite proteomes of acentriolar cells was performed to reveal dependencies of satellite composition on intact centrosomes. Although most components remained associated with PCM1 in acentriolar cells, reduced cytoplasmic and satellite levels were observed for a subset of centrosomal proteins. These results demonstrate that centriolar satellites and centrosomes form independently but share a substantial fraction of their proteomes. Dynamic exchange of proteins between these organelles could facilitate their adaptation to changing cellular environments during development, stress response and tissue homeostasis.

摘要

中心体是中心体和纤毛的核心结构元件。尽管在这些结构周围观察到了称为中心粒卫星的细胞质颗粒,但卫星蛋白的综合清单的缺乏阻碍了我们对其起源的理解。为了解决这个问题,我们通过从蔗糖梯度部分中对其关键成分 PCM1 进行亲和纯化,对中心粒卫星进行了基于质谱 (MS) 的蛋白质组谱分析。我们定义了一个由 223 种蛋白质组成的相互作用组,这些蛋白质在中心体成分中表现出明显的富集。该蛋白质组还包含在纤毛发生中起作用的新的结构和调节因子。对无中心体细胞的全细胞和中心粒卫星蛋白质组进行定量 MS,以揭示卫星组成对完整中心体的依赖性。尽管大多数成分在无中心体细胞中仍与 PCM1 相关联,但一部分中心体蛋白的细胞质和卫星水平降低。这些结果表明,中心粒卫星和中心体独立形成,但它们的蛋白质组有很大一部分是共享的。这些细胞器之间蛋白质的动态交换可以促进它们在发育、应激反应和组织稳态过程中适应不断变化的细胞环境。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/382b/6627235/a7d15b2bf88b/EMBJ-38-e101082-g002.jpg

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