Department of Pharmacology and Chemical Biology, University of Pittsburgh School of Medicine, Pittsburgh, Pennsylvania, USA.
FASEB J. 2019 Apr;33(4):4866-4882. doi: 10.1096/fj.201801382R. Epub 2018 Dec 31.
Aurora kinase A (AURKA) is necessary for proper primary cilium disassembly before mitosis. We found that depletion of caveolin-1 expression promotes primary cilia formation through the proteasomal-dependent degradation of aurora kinase A and induces premature senescence in human fibroblasts. Down-regulation of intraflagellar transport-88, a protein essential for ciliogenesis, inhibits premature senescence induced by the depletion of caveolin-1. In support of these findings, we showed that alisertib, a pharmacological inhibitor of AURKA, causes primary cilia formation and cellular senescence by irreversibly arresting cell growth. Suppression of primary cilia formation limits cellular senescence induced by alisertib. The primary cilium must be disassembled to free its centriole to form the centrosome, a necessary structure for mitotic spindle assembly and cell division. We showed that the use of the centriole to form primary cilia blocks centrosome formation and mitotic spindle assembly and prevents the completion of mitosis in cells in which cellular senescence is caused by the inhibition of AURKA. We also found that AURKA is down-regulated and primary cilia formation is enhanced when cellular senescence is promoted by other senescence-inducing stimuli, such as oxidative stress and UV light. Thus, we propose that impaired AURKA function induces premature senescence by preventing reabsorption of the primary cilium, which inhibits centrosome and mitotic spindle formation and consequently prevents the completion of mitosis. Our study causally links the inability of the cell to disassemble the primary cilium, a microtubule-based cellular organelle, to the development of premature senescence, a functionally and pathologically relevant cellular state.-Jeffries, E. P., Di Filippo, M., Galbiati, F. Failure to reabsorb the primary cilium induces cellular senescence.
极光激酶 A(AURKA)是有丝分裂前正确去除初级纤毛所必需的。我们发现,窖蛋白-1 表达的耗竭通过蛋白酶体依赖性降解极光激酶 A 促进初级纤毛的形成,并诱导人成纤维细胞过早衰老。内鞭毛运输蛋白-88 的下调,一种纤毛发生所必需的蛋白,抑制了窖蛋白-1 耗竭诱导的过早衰老。支持这些发现,我们表明,alisertib,一种极光激酶 A 的药理学抑制剂,通过不可逆地阻止细胞生长导致初级纤毛的形成和细胞衰老。抑制初级纤毛的形成限制了 alisertib 诱导的细胞衰老。初级纤毛必须被拆卸,以释放其中心粒,形成中心体,这是有丝分裂纺锤体组装和细胞分裂所必需的结构。我们表明,中心粒用于形成初级纤毛会阻止中心体的形成和有丝分裂纺锤体的组装,并阻止因 AURKA 抑制而导致细胞衰老的细胞完成有丝分裂。我们还发现,当细胞衰老被其他衰老诱导刺激,如氧化应激和 UV 光促进时,AURKA 被下调,初级纤毛的形成增强。因此,我们提出,AURKA 功能受损通过阻止初级纤毛的再吸收来诱导过早衰老,从而抑制中心体和有丝分裂纺锤体的形成,并因此阻止有丝分裂的完成。我们的研究因果关系地将细胞无法去除初级纤毛(一种基于微管的细胞细胞器)与过早衰老联系起来,过早衰老一种功能上和病理上相关的细胞状态。