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合成物理相互作用图谱确定动粒-检查点激活区域。

Synthetic Physical Interactions Map Kinetochore-Checkpoint Activation Regions.

作者信息

Ólafsson Guðjón, Thorpe Peter H

机构信息

The Francis Crick Institute, Mill Hill Laboratory, London, NW7 1AA, United Kingdom.

The Francis Crick Institute, Mill Hill Laboratory, London, NW7 1AA, United Kingdom

出版信息

G3 (Bethesda). 2016 Aug 9;6(8):2531-42. doi: 10.1534/g3.116.031930.

Abstract

The spindle assembly checkpoint (SAC) is a key mechanism to regulate the timing of mitosis and ensure that chromosomes are correctly segregated to daughter cells. The recruitment of the Mad1 and Mad2 proteins to the kinetochore is normally necessary for SAC activation. This recruitment is coordinated by the SAC kinase Mps1, which phosphorylates residues at the kinetochore to facilitate binding of Bub1, Bub3, Mad1, and Mad2. There is evidence that the essential function of Mps1 is to direct recruitment of Mad1/2. To test this model, we have systematically recruited Mad1, Mad2, and Mps1 to most proteins in the yeast kinetochore, and find that, while Mps1 is sufficient for checkpoint activation, recruitment of either Mad1 or Mad2 is not. These data indicate an important role for Mps1 phosphorylation in SAC activation, beyond the direct recruitment of Mad1 and Mad2.

摘要

纺锤体组装检查点(SAC)是调节有丝分裂时间并确保染色体正确分离到子细胞的关键机制。Mad1和Mad2蛋白募集到动粒通常是SAC激活所必需的。这种募集由SAC激酶Mps1协调,Mps1使动粒处的残基磷酸化,以促进Bub1、Bub3、Mad1和Mad2的结合。有证据表明,Mps1的基本功能是指导Mad1/2的募集。为了验证该模型,我们已将Mad1、Mad2和Mps1系统地募集到酵母动粒中的大多数蛋白质上,发现虽然Mps1足以激活检查点,但Mad1或Mad2的募集却不行。这些数据表明,除了直接募集Mad1和Mad2之外,Mps1磷酸化在SAC激活中也起着重要作用。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/4503/4978906/be520cd5dc9d/2531f1.jpg

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