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目前关于纺锤体组装检查点沉默的观点。

The current view for the silencing of the spindle assembly checkpoint.

作者信息

Wang Yanchang, Jin Fengzhi, Higgins Ryan, McKnight Kelly

机构信息

Department of Biomedical Sciences; College of Medicine; Florida State University; Tallahassee, FL USA.

出版信息

Cell Cycle. 2014;13(11):1694-701. doi: 10.4161/cc.29027. Epub 2014 Apr 28.

Abstract

Chromosome bipolar attachment is achieved when sister kinetochores are attached by microtubules emanating from opposite spindle poles, and this process is essential for faithful chromosome segregation during anaphase. A fundamental question in cell biology is how cells ensure that chromosome segregation only occurs after bipolar attachment. It is well documented that unattached kinetochores activate the spindle assembly checkpoint (SAC) to delay chromosome segregation. Therefore, the silencing of the SAC is thought to trigger anaphase onset, but how correct chromosome attachment is coupled with SAC silencing and the subsequent anaphase onset is poorly understood. The establishment of chromosome bipolar attachment not only results in the occupancy of kinetochores by microtubules but also applies tension on sister kinetochores. A long-standing debate is whether the kinetochore attachment (occupancy) or the tension silences the SAC. Recent work in budding yeast reveals the SAC silencing network SSN that prevents SAC silencing prior to tension generation at kinetochores. Therefore, this signaling pathway ensures that SAC silencing and the subsequent anaphase onset occur only after chromosome bipolar attachment applies tension on chromosomes. This review will summarize the recent advances in the understanding of the SAC silencing process.

摘要

当姐妹动粒被来自纺锤体两极的微管附着时,染色体实现双极附着,这一过程对于后期染色体的准确分离至关重要。细胞生物学中的一个基本问题是细胞如何确保染色体分离仅在双极附着后发生。有充分的文献记载,未附着的动粒会激活纺锤体组装检查点(SAC)以延迟染色体分离。因此,人们认为SAC的沉默会触发后期开始,但正确染色体附着如何与SAC沉默以及随后的后期开始相耦合却知之甚少。染色体双极附着的建立不仅导致微管占据动粒,还会对姐妹动粒施加张力。一个长期存在的争论是动粒附着(占据)还是张力使SAC沉默。最近在芽殖酵母中的研究揭示了SAC沉默网络SSN,该网络可防止在动粒产生张力之前SAC沉默。因此,这条信号通路确保SAC沉默以及随后的后期开始仅在染色体双极附着对染色体施加张力之后发生。本综述将总结在理解SAC沉默过程方面的最新进展。

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