首页> 外文期刊>Molecular cell >Phosphorylation of Cdc20 by Bub1 Provides a Catalytic Mechanism for APC/C Inhibition by the Spindle Checkpoint.
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Phosphorylation of Cdc20 by Bub1 Provides a Catalytic Mechanism for APC/C Inhibition by the Spindle Checkpoint.

机译:Bub1对Cdc20的磷酸化作用为主轴检查点抑制APC / C提供了催化机制。

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摘要

To ensure the fidelity of chromosome segregation, the spindle checkpoint blocks the ubiquitin ligase activity of APC/C(Cdc20) in response to a single chromatid not properly attached to the mitotic spindle. Here we show that HeLa cells depleted for Bub1 by RNA interference are defective in checkpoint signaling. Bub1 directly phosphorylates Cdc20 in vitro and inhibits the ubiquitin ligase activity of APC/C(Cdc20) catalytically. A Cdc20 mutant with all six Bub1 phosphorylation sites removed is refractory to Bub1-mediated phosphorylation and inhibition in vitro. Upon checkpoint activation, Bub1 itself is hyperphosphorylated and its kinase activity toward Cdc20 is stimulated. Ectopic expression of the nonphosphorylatable Cdc20 mutant allows HeLa cells to escape from mitosis in the presence of spindle damage. Therefore, Bub1-mediated phosphorylation of Cdc20 is required for proper checkpoint signaling. We speculate that inhibition of APC/C(Cdc20) by Bub1 in a catalytic fashion may partly account for the exquisite sensitivity of the spindle checkpoint.
机译:为了确保染色体分离的保真度,纺锤体检查点响应未正确附着在有丝分裂纺锤体上的单个染色单体而阻止APC / C(Cdc20)的泛素连接酶活性。在这里,我们显示被RNA干扰耗尽Bub1的HeLa细胞在检查站信号传导中存在缺陷。 Bub1在体外直接磷酸化Cdc20,并催化抑制APC / C(Cdc20)的泛素连接酶活性。删除了所有六个Bub1磷酸化位点的Cdc20突变体对Bub1介导的磷酸化和体外抑制均具有耐药性。在检查点激活后,Bub1本身就会被过度磷酸化,并刺激其对Cdc20的激酶活性。不可磷酸化的Cdc20突变体的异位表达使HeLa细胞在纺锤体受损的情况下逃脱有丝分裂。因此,Bub1介导的Cdc20磷酸化是正确检查点信号传递所必需的。我们推测Bub1以催化方式抑制APC / C(Cdc20)可能部分解释了主轴检查点的灵敏性。

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