Transiently formed nucleus-to-cilium microtubule arrays mediate senescence initiation in a KIFC3-dependent manner

Despite the importance of cellular senescence in human health, how damaged cells undergo senescence remains elusive. We have previously shown that promyelocytic leukemia nuclear body (PML-NBs) translocation of the ciliary FBF1 is essential for senescence induction in stressed cells. Here we discover...

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Veröffentlicht in:Nature communications 2024-09, Vol.15 (1), p.7977-16, Article 7977
Hauptverfasser: Robichaud, Jielu Hao, Zhang, Yingyi, Chen, Chuan, He, Kai, Huang, Yan, Zhang, Xu, Sun, Xiaobo, Ma, Xiaoyu, Hardiman, Gary, Morrison, Ciaran G., Dong, Zheng, LeBrasseur, Nathan K., Ling, Kun, Hu, Jinghua
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Sprache:eng
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Zusammenfassung:Despite the importance of cellular senescence in human health, how damaged cells undergo senescence remains elusive. We have previously shown that promyelocytic leukemia nuclear body (PML-NBs) translocation of the ciliary FBF1 is essential for senescence induction in stressed cells. Here we discover that an early cellular event occurring in stressed cells is the transient assembly of s tress- i nduced n ucleus-to- c ilium m icro t ubule arrays (sinc-MTs). The sinc-MTs are distinguished by unusual polyglutamylation and unique polarity, with minus-ends nucleating near the nuclear envelope and plus-ends near the ciliary base. KIFC3, a minus-end-directed kinesin, is recruited to plus-ends of sinc-MTs and interacts with the centrosomal protein CENEXIN1. In damaged cells, CENEXIN1 co-translocates with FBF1 to PML-NBs. Deficiency of KIFC3 abolishes PML-NB translocation of FBF1 and CENEXIN1, as well as senescence initiation in damaged cells. Our study reveals that KIFC3-mediated nuclear transport of FBF1 along polyglutamylated sinc-MTs is a prerequisite for senescence induction in mammalian cells. How stresses result in cellular senescence is not fully understood. Here, the authors show that cell stress induces the assembly of a polyglutamylated microtubule array connecting nucleus and cilium, which aids in transporting a senescence-inducing protein.
ISSN:2041-1723
2041-1723
DOI:10.1038/s41467-024-52363-w