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Mad2 and the APC/C compete for the same site on Cdc20 to ensure proper chromosome segregation

机译:Mad2和APC / C竞争Cdc20上的同一位点以确保正确的染色体分离

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摘要

The spindle assembly checkpoint (SAC) is essential to ensure proper chromosome segregation and thereby maintain genomic stability. The SAC monitors chromosome attachment, and any unattached chromosomes generate a “wait anaphase” signal that blocks chromosome segregation. The target of the SAC is Cdc20, which activates the anaphase-promoting complex/cyclosome (APC/C) that triggers anaphase and mitotic exit by ubiquitylating securin and cyclin B1. The inhibitory complex formed by the SAC has recently been shown to inhibit Cdc20 by acting as a pseudosubstrate inhibitor, but in this paper, we show that Mad2 also inhibits Cdc20 by binding directly to a site required to bind the APC/C. Mad2 and the APC/C competed for Cdc20 in vitro, and a Cdc20 mutant that does not bind stably to Mad2 abrogated the SAC in vivo. Thus, we provide insights into how Cdc20 binds the APC/C and uncover a second mechanism by which the SAC inhibits the APC/C.
机译:纺锤体装配检查点(SAC)对于确保正确的染色体分离并由此维持基因组稳定性至关重要。 SAC监视染色体附着,任何未附着的染色体都会生成“等待后期”信号,从而阻止染色体分离。 SAC的目标是Cdc20,它激活促进后期发育的复合物/环体(APC / C),该复合物/环体通过泛素化securin和细胞周期蛋白B1触发后期和有丝分裂的退出。最近显示由SAC形成的抑制复合物通过充当假底物抑制剂来抑制Cdc20,但在本文中,我们表明Mad2还通过直接结合至与APC / C结合所需的位点来抑制Cdc20。 Mad2和APC / C在体外竞争Cdc20,不稳定地与Mad2结合的Cdc20突变体在体内废除了SAC。因此,我们提供了有关Cdc20如何结合APC / C的见解,并揭示了SAC抑制APC / C的第二种机制。

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