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纺锤体组装检查点的过早沉默由Bub1-H2A-Sgo1-PP2A轴在……中阻止 。(原文结尾处不完整,翻译可能存在信息缺失)

Premature Silencing of the Spindle Assembly Checkpoint Is Prevented by the Bub1-H2A-Sgo1-PP2A Axis in .

作者信息

Jin Fengzhi, Bokros Michael, Wang Yanchang

机构信息

Department of Biomedical Sciences, College of Medicine, Florida State University, Tallahassee, Florida 32306-4300.

Department of Biomedical Sciences, College of Medicine, Florida State University, Tallahassee, Florida 32306-4300

出版信息

Genetics. 2017 Mar;205(3):1169-1178. doi: 10.1534/genetics.116.195727. Epub 2016 Dec 30.

Abstract

The spindle assembly checkpoint (SAC) monitors mistakes in kinetochore-microtubule interaction and its activation prevents anaphase entry. The SAC remains active until all chromosomes have achieved bipolar attachment which applies tension on kinetochores. Our previous data in budding yeast show that Ipl1/Aurora B kinase and a centromere-associated protein, Sgo1, are required to prevent SAC silencing prior to tension generation, but we believe that this regulatory network is incomplete. Bub1 kinase is one of the SAC components, and Bub1-dependent H2A phosphorylation triggers centromere recruitment of Sgo1 by H2A in yeast and human cells. Although yeast cells lacking the kinase domain of Bub1 show competent SAC activation, we found that the mutant cells fail to maintain a prolonged checkpoint arrest in the presence of tensionless attachment. Mutation of the Bub1 phosphorylation site in H2A also results in premature SAC silencing in yeast cells. Previous data indicate that Sgo1 protein binds to PP2A, and we found that Δ mutants exhibited premature SAC silencing as well. We further revealed that mutants with abolished binding to H2A or PP2A displayed premature SAC silencing. Together, our results suggest that, in budding yeast , the Bub1-H2A-Sgo1-PP2A axis prevents SAC silencing and helps prolonged checkpoint arrest prior to tension establishment at kinetochores.

摘要

纺锤体组装检验点(SAC)监测动粒与微管相互作用中的错误,其激活可防止细胞进入后期。SAC一直保持激活状态,直到所有染色体都实现双极附着,从而在动粒上施加张力。我们之前在芽殖酵母中的数据表明,Ipl1/Aurora B激酶和一种着丝粒相关蛋白Sgo1是在张力产生之前防止SAC沉默所必需的,但我们认为这个调控网络并不完整。Bub1激酶是SAC的组成成分之一,在酵母和人类细胞中,依赖Bub1的H2A磷酸化会触发H2A将Sgo1招募到着丝粒。尽管缺乏Bub1激酶结构域的酵母细胞表现出正常的SAC激活,但我们发现,在存在无张力附着的情况下,突变细胞无法维持长时间的检验点停滞。H2A中Bub1磷酸化位点的突变也会导致酵母细胞中SAC过早沉默。先前的数据表明,Sgo1蛋白与PP2A结合,我们发现Δ突变体也表现出SAC过早沉默。我们进一步揭示,与H2A或PP2A结合被消除的突变体显示出SAC过早沉默。总之,我们的结果表明,在芽殖酵母中,Bub1-H2A-Sgo1-PP2A轴可防止SAC沉默,并有助于在动粒建立张力之前延长检验点停滞时间。

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本文引用的文献

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Spindle assembly checkpoint silencing and beyond.纺锤体组装检查点沉默及其他。
Cell Cycle. 2016 Jul 2;15(13):1661-2. doi: 10.1080/15384101.2016.1176396. Epub 2016 Apr 22.

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