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进行性骨化性纤维发育不良通过促进初级纤毛解聚对纤毛发生起负向调节作用并促进细胞周期重新进入。

FOP Negatively Regulates Ciliogenesis and Promotes Cell Cycle Re-entry by Facilitating Primary Cilia Disassembly.

作者信息

Jiang Huadong, Liu Shanshan, Cheung Man-Hei, Amin Aftab, Liang Chun

机构信息

State Key Lab for Molecular Neuroscience, Division of Life Science, Center for Cancer Research, Hong Kong University of Science and Technology, Hong Kong, China.

Guangdong Key Laboratory for Genome Stability and Disease Prevention, Department of Pharmacology, Carson International Cancer Center, Shenzhen University Health Science Center, Shenzhen, China.

出版信息

Front Cell Dev Biol. 2020 Nov 12;8:590449. doi: 10.3389/fcell.2020.590449. eCollection 2020.

Abstract

Primary cilia are microtubule-based, antenna-like organelles, which are formed in G phase and resorbed as cells re-enter the cell cycle. It has been reported that primary cilia can influence the timing of cell cycle progression. However, the molecular links between ciliogenesis and cell cycle progression are not well understood. The Fibroblast Growth Factor Receptor 1 Oncogene Partner (FOP) has been implicated in ciliogenesis, but its function in ciliogenesis is not clear. Here, we show that FOP plays a negative role in ciliogenesis. Knockdown of FOP promotes cilia elongation and suppresses cilia disassembly. In contrast, ectopic expression of FOP induces defects in primary cilia formation, which can be rescued by either pharmacological or genetic inhibition of Aurora kinase A which promotes cilia disassembly. Moreover, knockdown of FOP delays cell cycle re-entry of quiescent cells following serum re-stimulation, and this can be reversed by silencing Intraflagellar Transport 20 (IFT20), an intraflagellar transport member essential for ciliogenesis. Collectively, these results suggest that FOP negatively regulates ciliogenesis and can promote cell cycle re-entry by facilitating cilia disassembly.

摘要

初级纤毛是基于微管的、天线状的细胞器,在G期形成,并在细胞重新进入细胞周期时被吸收。据报道,初级纤毛可影响细胞周期进程的时间。然而,纤毛发生与细胞周期进程之间的分子联系尚不清楚。成纤维细胞生长因子受体1癌基因伴侣(FOP)与纤毛发生有关,但其在纤毛发生中的功能尚不清楚。在这里,我们表明FOP在纤毛发生中起负作用。敲低FOP可促进纤毛伸长并抑制纤毛解体。相反,FOP的异位表达会导致初级纤毛形成缺陷,这可通过促进纤毛解体的极光激酶A的药理学或基因抑制来挽救。此外,敲低FOP会延迟血清再刺激后静止细胞的细胞周期重新进入,而这可通过沉默鞭毛内运输20(IFT20)来逆转,IFT20是纤毛发生所必需的鞭毛内运输成员。总体而言,这些结果表明FOP负向调节纤毛发生,并可通过促进纤毛解体来促进细胞周期重新进入。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/f94c/7693466/87bb1a278582/fcell-08-590449-g001.jpg

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