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一个连续的多靶点Mps1磷酸化级联反应促进纺锤体检查点信号传导。

A sequential multi-target Mps1 phosphorylation cascade promotes spindle checkpoint signaling.

作者信息

Ji Zhejian, Gao Haishan, Jia Luying, Li Bing, Yu Hongtao

机构信息

Department of Pharmacology, Howard Hughes Medical Institute, University of Texas Southwestern Medical Center, Dallas, United States.

出版信息

Elife. 2017 Jan 10;6:e22513. doi: 10.7554/eLife.22513.

Abstract

The master spindle checkpoint kinase Mps1 senses kinetochore-microtubule attachment and promotes checkpoint signaling to ensure accurate chromosome segregation. The kinetochore scaffold Knl1, when phosphorylated by Mps1, recruits checkpoint complexes Bub1-Bub3 and BubR1-Bub3 to unattached kinetochores. Active checkpoint signaling ultimately enhances the assembly of the mitotic checkpoint complex (MCC) consisting of BubR1-Bub3, Mad2, and Cdc20, which inhibits the anaphase-promoting complex or cyclosome bound to Cdc20 (APC/C) to delay anaphase onset. Using in vitro reconstitution, we show that Mps1 promotes APC/C inhibition by MCC components through phosphorylating Bub1 and Mad1. Phosphorylated Bub1 binds to Mad1-Mad2. Phosphorylated Mad1 directly interacts with Cdc20. Mutations of Mps1 phosphorylation sites in Bub1 or Mad1 abrogate the spindle checkpoint in human cells. Therefore, Mps1 promotes checkpoint activation through sequentially phosphorylating Knl1, Bub1, and Mad1. This sequential multi-target phosphorylation cascade makes the checkpoint highly responsive to Mps1 and to kinetochore-microtubule attachment.

摘要

主纺锤体检查点激酶Mps1感知动粒与微管的附着,并促进检查点信号传导,以确保染色体准确分离。动粒支架蛋白Knl1在被Mps1磷酸化后,会将检查点复合物Bub1-Bub3和BubR1-Bub3招募到未附着的动粒上。活跃的检查点信号最终会增强由BubR1-Bub3、Mad2和Cdc20组成的有丝分裂检查点复合物(MCC)的组装,该复合物会抑制与Cdc20结合的后期促进复合物或细胞周期体(APC/C),从而延迟后期开始。通过体外重组,我们发现Mps1通过磷酸化Bub1和Mad1来促进MCC组分对APC/C的抑制作用。磷酸化的Bub1与Mad1-Mad2结合。磷酸化的Mad1直接与Cdc20相互作用。Bub1或Mad1中Mps1磷酸化位点的突变会消除人类细胞中的纺锤体检查点。因此,Mps1通过依次磷酸化Knl1、Bub1和Mad1来促进检查点激活。这种依次进行的多靶点磷酸化级联反应使检查点对Mps1和动粒与微管的附着高度敏感。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/10d1/5268738/919628cd1bce/elife-22513-fig1.jpg

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