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Poc5 是一种瞬态基体组件,对于基体成熟很重要。

Poc5 is a transient basal body component that is important for basal body maturation.

机构信息

Department of Molecular, Cellular, and Developmental Biology, University of Colorado, Boulder, CO 80309, USA.

Department of Molecular and Cellular Biology, University of California, Davis, CA 95616, USA.

出版信息

J Cell Sci. 2020 Jun 4;133(11):jcs240838. doi: 10.1242/jcs.240838.

DOI:10.1242/jcs.240838
PMID:32350068
原文链接:https://pmc.ncbi.nlm.nih.gov/articles/PMC7286293/
Abstract

Basal bodies (BBs) are microtubule-based organelles that act as a template for and stabilize cilia at the cell surface. Centrins ubiquitously associate with BBs and function in BB assembly, maturation and stability. Human POC5 (hPOC5) is a highly conserved centrin-binding protein that binds centrins through Sfi1p-like repeats and is required for building full-length, mature centrioles. Here, we use the BB-rich cytoskeleton of to characterize Poc5 BB functions. Poc5 (TtPoc5) uniquely incorporates into assembling BBs and is then removed from mature BBs prior to ciliogenesis. Complete genomic knockout of leads to a significantly increased production of BBs, yet a markedly reduced ciliary density, both of which are rescued by reintroduction of TtPoc5. A second -like gene, , is similarly implicated in modulating BB production. When and are co-deleted, cell viability is compromised and BB overproduction is exacerbated. Overproduced BBs display defective transition zone formation and a diminished capacity for ciliogenesis. This study uncovers a requirement for Poc5 in building mature BBs, providing a possible functional link between mutations and impaired cilia.This article has an associated First Person interview with the first author of the paper.

摘要

基体(BBs)是一种基于微管的细胞器,作为细胞表面纤毛的模板并稳定其结构。中心体普遍与 BBs 结合,并在 BB 的组装、成熟和稳定中发挥作用。人 POC5(hPOC5)是一种高度保守的中心体结合蛋白,通过 Sfi1p 样重复与中心体结合,是构建全长成熟中心粒所必需的。在这里,我们利用富含 BB 的 细胞骨架来表征 Poc5 的 BB 功能。TtPoc5(TtPoc5)独特地整合到正在组装的 BB 中,然后在纤毛发生之前从成熟的 BB 中被移除。完全敲除 导致 BB 的产生显著增加,但纤毛密度明显降低,这两者都可以通过重新引入 TtPoc5 得到挽救。第二个类似的基因 也同样参与调节 BB 的产生。当 和 同时被敲除时,细胞活力受到损害,BB 的过度产生加剧。过度产生的 BB 显示出过渡区形成缺陷和纤毛发生能力降低。这项研究揭示了 Poc5 在构建成熟 BB 中的必要性,为 突变和受损纤毛之间的功能联系提供了可能。本文附有该论文第一作者的第一人称采访。