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首页> 外文期刊>Molecular biology of the cell >The spindle and kinetochore-associated (Ska) complex enhances binding of the anaphase-promoting complex/cyclosome (APC/C) to chromosomes and promotes mitotic exit
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The spindle and kinetochore-associated (Ska) complex enhances binding of the anaphase-promoting complex/cyclosome (APC/C) to chromosomes and promotes mitotic exit

机译:纺锤体和线粒体相关(Ska)复合物增强后期促进复合物/环体(APC / C)与染色体的结合并促进有丝分裂退出

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The spindle and kinetochore-associated (Ska) protein complex is a heterotrimeric complex required for timely anaphase onset. The major phenotypes seen after small interfering RNA-mediated depletion of Ska are transient alignment defects followed by metaphase arrest that ultimately results in cohesion fatigue. We find that cells depleted of Ska3 arrest at metaphase with only partial degradation of cyclin B1 and securin. In cells arrested with microtubule drugs, Ska3-depleted cells exhibit slower mitotic exit when the spindle checkpoint is silenced by inhibition of the checkpoint kinase, Mps1, or when cells are forced to exit mitosis downstream of checkpoint silencing by inactivation of Cdk1. These results suggest that in addition to a role in fostering kinetochore-microtubule attachment and chromosome alignment, the Ska complex has functions in promoting anaphase onset. We find that both Ska3 and microtubules promote chromosome association of the anaphase-promoting complex/cyclosome (APC/C). Chromosome-bound APC/C shows significantly stronger ubiquitylation activity than cytoplasmic APC/C. Forced localization of Ska complex to kinetochores, independent of microtubules, results in enhanced accumulation of APC/C on chromosomes and accelerated cyclin B1 degradation during induced mitotic exit. We propose that a Ska-microtubule-kinetochore association promotes APC/C localization to chromosomes, thereby enhancing anaphase onset and mitotic exit.
机译:纺锤体和线粒体相关(Ska)蛋白复合物是异基因三聚体复合物,是及时后期发病所必需的。小干扰RNA介导的Ska耗竭后观察到的主要表型为瞬时比对缺陷,随后为中期停滞,最终导致内聚疲劳。我们发现,耗尽Ska3的细胞会在中期停滞,而细胞周期蛋白B1和securin只会部分降解。在被微管药物阻滞的细胞中,当通过抑制检查点激酶Mps1抑制纺锤体检查点沉默时,或者当细胞因Cdk1失活而被迫退出检查点沉默下游的有丝分裂时,耗尽Ska3的细胞表现出较慢的有丝分裂退出。这些结果表明,除了在促进线粒体-微管附着和染色体排列中发挥作用外,Ska复合物还具有促进后期发病的功能。我们发现Ska3和微管都促进后期促进复杂/环体(APC / C)的染色体关联。结合染色体的APC / C显示出比细胞质APC / C明显更强的泛素化活性。将Ska复合物强制定位到动植物,与微管无关,从而导致APC / C在染色体上的积累增强,并在诱导有丝分裂退出期间加速细胞周期蛋白B1降解。我们建议,Ska-微管-线粒体协会促进APC / C定位到染色体,从而增强后期发病和有丝分裂退出。

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