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在染色体双极连接建立后沉默纺锤体组装检查点的信号网络。

The signaling network that silences the spindle assembly checkpoint upon the establishment of chromosome bipolar attachment.

机构信息

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

出版信息

Proc Natl Acad Sci U S A. 2013 Dec 24;110(52):21036-41. doi: 10.1073/pnas.1307595111. Epub 2013 Dec 9.

Abstract

Improper kinetochore attachments activate the spindle assembly checkpoint (SAC) to prevent anaphase onset, but it is poorly understood how this checkpoint is silenced to allow anaphase onset. Chromosome bipolar attachment applies tension on sister kinetochores, and the lack of tension delays anaphase onset. In budding yeast, the delay induced by tension defects depends on the intact SAC as well as increase in ploidy (Ipl1)/Aurora kinase and a centromere-associated protein ShuGOshin (Sgo1). Here we provide evidence indicating that Ipl1-dependent phosphorylation of the kinetochore protein Duo1 and Mps1 interacting (Dam1) prevents SAC silencing when tension is absent. The nonphosphorylatable dam1 mutant cells, as well as sgo1 mutant cells, are competent in SAC activation but unable to prevent SAC silencing in response to tension defects. We further found that phosphomimetic dam1 mutants exhibited delayed anaphase onset mainly due to the failure in SAC silencing, but destabilized kinetochore attachment likely plays a minor role in this delay. Because the tension resulting from bipolar attachment triggers the dephosphorylation of Dam1 by protein phosphatase 1, this dephosphorylation likely coordinates SAC silencing with chromosome bipolar attachment. Therefore, Sgo1, Ipl1 kinase, Dam1, and protein phosphatase 1 comprise the SAC silencing network that ensures the correct timing for anaphase onset.

摘要

不正确的动粒附着会激活纺锤体组装检查点(SAC)以防止后期起始,但人们对如何沉默这个检查点以允许后期起始知之甚少。染色体双极附着对姐妹动粒施加张力,而缺乏张力会延迟后期起始。在芽殖酵母中,张力缺陷引起的延迟既依赖于完整的 SAC,也依赖于着丝粒相关蛋白 ShuGOshin(Sgo1)和细胞倍增(Ipl1)/极光激酶的增加。在这里,我们提供的证据表明,当不存在张力时,Ipl1 依赖性磷酸化动粒蛋白 Duo1 和 Mps1 相互作用(Dam1)可防止 SAC 沉默。非磷酸化的 dam1 突变体细胞以及 sgo1 突变体细胞在 SAC 激活方面具有能力,但无法响应张力缺陷来防止 SAC 沉默。我们进一步发现,磷酸模拟突变体 dam1 表现出延迟的后期起始,主要是由于 SAC 沉默失败,但不稳定的动粒附着可能在这种延迟中起次要作用。由于双极附着产生的张力触发蛋白磷酸酶 1 对 Dam1 的去磷酸化,这种去磷酸化可能将 SAC 沉默与染色体双极附着协调起来。因此,Sgo1、Ipl1 激酶、Dam1 和蛋白磷酸酶 1 构成了 SAC 沉默网络,确保了后期起始的正确时间。

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