Microtubule asters anchored by FSD1 control axoneme assembly and ciliogenesis

Microtubule asters originate from centrosomes but their role during interphase remains largely unknown. Here, the authors find that microtubule asters anchored by previously-uncharacterized FSD1 play a role in ciliogenesis by maintaining the dynamic localization of centriolar satellites.

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Autores principales: Hai-Qing Tu, Xuan-He Qin, Zhi-Bin Liu, Zeng-Qing Song, Huai-Bin Hu, Yu-Cheng Zhang, Yan Chang, Min Wu, Yan Huang, Yun-Feng Bai, Guang Wang, Qiu-Ying Han, Ai-Ling Li, Tao Zhou, Feng Liu, Xue-Min Zhang, Hui-Yan Li
Formato: article
Lenguaje:EN
Publicado: Nature Portfolio 2018
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Acceso en línea:https://doaj.org/article/11c8b38ba9bf4af5aa4846beb8f509dd
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spelling oai:doaj.org-article:11c8b38ba9bf4af5aa4846beb8f509dd2021-12-02T16:50:07ZMicrotubule asters anchored by FSD1 control axoneme assembly and ciliogenesis10.1038/s41467-018-07664-22041-1723https://doaj.org/article/11c8b38ba9bf4af5aa4846beb8f509dd2018-12-01T00:00:00Zhttps://doi.org/10.1038/s41467-018-07664-2https://doaj.org/toc/2041-1723Microtubule asters originate from centrosomes but their role during interphase remains largely unknown. Here, the authors find that microtubule asters anchored by previously-uncharacterized FSD1 play a role in ciliogenesis by maintaining the dynamic localization of centriolar satellites.Hai-Qing TuXuan-He QinZhi-Bin LiuZeng-Qing SongHuai-Bin HuYu-Cheng ZhangYan ChangMin WuYan HuangYun-Feng BaiGuang WangQiu-Ying HanAi-Ling LiTao ZhouFeng LiuXue-Min ZhangHui-Yan LiNature PortfolioarticleScienceQENNature Communications, Vol 9, Iss 1, Pp 1-17 (2018)
institution DOAJ
collection DOAJ
language EN
topic Science
Q
spellingShingle Science
Q
Hai-Qing Tu
Xuan-He Qin
Zhi-Bin Liu
Zeng-Qing Song
Huai-Bin Hu
Yu-Cheng Zhang
Yan Chang
Min Wu
Yan Huang
Yun-Feng Bai
Guang Wang
Qiu-Ying Han
Ai-Ling Li
Tao Zhou
Feng Liu
Xue-Min Zhang
Hui-Yan Li
Microtubule asters anchored by FSD1 control axoneme assembly and ciliogenesis
description Microtubule asters originate from centrosomes but their role during interphase remains largely unknown. Here, the authors find that microtubule asters anchored by previously-uncharacterized FSD1 play a role in ciliogenesis by maintaining the dynamic localization of centriolar satellites.
format article
author Hai-Qing Tu
Xuan-He Qin
Zhi-Bin Liu
Zeng-Qing Song
Huai-Bin Hu
Yu-Cheng Zhang
Yan Chang
Min Wu
Yan Huang
Yun-Feng Bai
Guang Wang
Qiu-Ying Han
Ai-Ling Li
Tao Zhou
Feng Liu
Xue-Min Zhang
Hui-Yan Li
author_facet Hai-Qing Tu
Xuan-He Qin
Zhi-Bin Liu
Zeng-Qing Song
Huai-Bin Hu
Yu-Cheng Zhang
Yan Chang
Min Wu
Yan Huang
Yun-Feng Bai
Guang Wang
Qiu-Ying Han
Ai-Ling Li
Tao Zhou
Feng Liu
Xue-Min Zhang
Hui-Yan Li
author_sort Hai-Qing Tu
title Microtubule asters anchored by FSD1 control axoneme assembly and ciliogenesis
title_short Microtubule asters anchored by FSD1 control axoneme assembly and ciliogenesis
title_full Microtubule asters anchored by FSD1 control axoneme assembly and ciliogenesis
title_fullStr Microtubule asters anchored by FSD1 control axoneme assembly and ciliogenesis
title_full_unstemmed Microtubule asters anchored by FSD1 control axoneme assembly and ciliogenesis
title_sort microtubule asters anchored by fsd1 control axoneme assembly and ciliogenesis
publisher Nature Portfolio
publishDate 2018
url https://doaj.org/article/11c8b38ba9bf4af5aa4846beb8f509dd
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