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PMID: 26880200 已发表 · ppublish 英语

Ndel1 suppresses ciliogenesis in proliferating cells by regulating the trichoplein-Aurora A pathway.

The Journal of cell biology ·第 212 卷 ·第 4 期 ·2016-08-01

Inaba Hironori, Goto Hidemasa, Kasahara Kousuke, Kumamoto Kanako, Yonemura Shigenobu, Inoko Akihito, Yamano Shotaro, Wanibuchi Hideki, He Dongwei, Goshima Naoki, Kiyono Tohru, Hirotsune Shinji, Inagaki Masaki

摘要

Primary cilia protrude from the surface of quiescent cells and disassemble at cell cycle reentry. We previously showed that ciliary reassembly is suppressed by trichoplein-mediated Aurora A activation pathway in growing cells. Here, we report that Ndel1, a well-known modulator of dynein activity, localizes at the subdistal appendage of the mother centriole, which nucleates a primary cilium. In the presence of serum, Ndel1 depletion reduces trichoplein at the mother centriole and induces unscheduled primary cilia formation, which is reverted by forced trichoplein expression or coknockdown of KCTD17 (an E3 ligase component protein for trichoplein). Serum starvation induced transient Ndel1 degradation, subsequent to the disappearance of trichoplein at the mother centriole. Forced expression of Ndel1 suppressed trichoplein degradation and axonemal microtubule extension during ciliogenesis, similar to trichoplein induction or KCTD17 knockdown. Most importantly, the proportion of ciliated and quiescent cells was increased in the kidney tubular epithelia of newborn Ndel1-hypomorphic mice. Thus, Ndel1 acts as a novel upstream regulator of the trichoplein-Aurora A pathway to inhibit primary cilia assembly.

文献信息
期刊
The Journal of cell biology
期刊简称
J Cell Biol
发表日期
2016-08-01
收录日期
2016-02-16
更新日期
2016-08-15
语言
英语
国家/地区
United States
NLM ID
0375356
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