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揭开中心粒卫星的奥秘:是时候重写关于中心体/纤毛复合体的教科书了。

Unraveling the mysteries of centriolar satellites: time to rewrite the textbooks about the centrosome/cilium complex.

作者信息

Odabasi Ezgi, Batman Umut, Firat-Karalar Elif Nur

机构信息

Department of Molecular Biology and Genetics, Koc University, Istanbul, Turkey.

出版信息

Mol Biol Cell. 2020 Apr 15;31(9):866-872. doi: 10.1091/mbc.E19-07-0402.

Abstract

Centriolar satellites are membraneless granules that localize and move around centrosomes and cilia. Once referred to as structures with no obvious function, research in the past decade has identified satellites as key regulators of a wide range of cellular and organismal processes. Importantly, these studies have revealed a substantial overlap between functions, proteomes, and disease links of satellites with centrosomes and cilia. Therefore, satellites are now accepted as the "third component" of the vertebrate centrosome/cilium complex, which profoundly changes the way we think about the assembly, maintenance, and remodeling of the complex at the cellular and organismal levels. In this perspective, we first provide an overview of the cellular and structural complexities of centriolar satellites. We then describe the progress in the identification of the satellite interactome, which have paved the way to a molecular understanding of their mechanism of action and assembly mechanisms. After exploring current insights into their functions as recently described by loss-of-function studies and comparative evolutionary approaches, we discuss major unanswered questions regarding their functional and compositional diversity and their functions outside centrosomes and cilia.

摘要

中心粒卫星是无膜颗粒,定位于中心体和纤毛周围并在其周围移动。曾经被认为是没有明显功能的结构,过去十年的研究已将卫星确定为广泛细胞和机体过程的关键调节因子。重要的是,这些研究揭示了卫星与中心体和纤毛在功能、蛋白质组和疾病关联方面存在大量重叠。因此,卫星现在被公认为脊椎动物中心体/纤毛复合体的“第三组分”,这深刻改变了我们在细胞和机体水平上对该复合体组装、维持和重塑的思考方式。从这个角度来看,我们首先概述中心粒卫星的细胞和结构复杂性。然后我们描述卫星相互作用组鉴定方面的进展,这些进展为从分子层面理解其作用机制和组装机制铺平了道路。在探讨了功能丧失研究和比较进化方法最近所描述的关于其功能的当前见解之后,我们讨论了关于其功能和组成多样性以及它们在中心体和纤毛之外的功能的主要未解决问题。

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