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APC15 drives the turnover of MCC-CDC20 to make the spindle assembly checkpoint responsive to kinetochore attachment

机译:apC15驱动mCC-CDC20的周转,使主轴装配检查点响应于动粒附件

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摘要

Faithful chromosome segregation during mitosis depends on the Spindle Assembly Checkpoint (SAC) that monitors kinetochore attachment to the mitotic spindle. Unattached kinetochores generate mitotic checkpoint proteins complexes (MCCs) that bind and inhibit the Anaphase Promoting Complex/Cyclosome (APC/C). How the SAC proficiently inhibits the APC/C but still allows its rapid activation when the last kinetochore attaches to the spindle is important to understand how cells maintain genomic stability. We show that the APC/C subunit APC15 is required for the turnover of the APC/C co-activator Cdc20 and release of MCCs during SAC signalling but not for APC/C activity per se. In the absence of APC15, MCCs and ubiquitylated Cdc20 remain ‘locked’ onto the APC/C, which prevents the ubiquitylation and degradation of Cyclin B1 when the SAC is satisfied. We conclude that APC15 mediates the constant turnover of Cdc20 and MCCs on the APC/C to allow the SAC to respond to the attachment state of kinetochores.
机译:在有丝分裂期间忠实的染色体分离取决于纺锤体装配检查点(SAC),该点可监视动粒体附着在有丝分裂纺锤体上。独立的动植物产生有丝分裂检查点蛋白复合物(MCC),它们结合并抑制后期促进复合物/环体(APC / C)。当最后一个线粒体附着在纺锤体上时,SAC如何有效地抑制APC / C,但仍然允许其快速激活,这对于理解细胞如何维持基因组稳定性非常重要。我们表明,APC / C亚基APC15是SAC信号转导期间APC / C共激活子Cdc20的转换和MCC释放所必需的,而不是APC / C本身的活性。在缺少APC15的情况下,MCC和泛素化的Cdc20仍被“锁定”在APC / C上,这可以在满足SAC要求时防止Cyclin B1泛素化和降解。我们得出的结论是,APC15介导了APC / C上Cdc20和MCC的不断转换,以使SAC能够响应动植物的附着状态。

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