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Role of ubiquitylation of components of mitotic checkpoint complex in their dissociation from anaphase-promoting complex/cyclosome

机译:有丝分裂检查点复合物成分的泛素化在其从后期促进复合物/环体解离中的作用

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摘要

The mitotic checkpoint system ensures the fidelity of chromosome segregation in mitosis by preventing premature initiation of anaphase until correct bipolar attachment of chromosomes to the mitotic spindle is reached. It promotes the assembly of a mitotic checkpoint complex (MCC), composed of BubR1, Bub3, Cdc20, and Mad2, which inhibits the activity of the anaphase-promoting complex/cyclosome (APC/C) ubiquitin ligase. When the checkpoint is satisfied, anaphase is initiated by the disassembly of MCC. Previous studies indicated that the dissociation of APC/C-bound MCC requires ubiquitylation and suggested that the target of ubiquitylation is the Cdc20 component of MCC. However, it remained unknown how ubiquitylation causes the release of MCC from APC/C and its disassembly and whether ubiquitylation of additional proteins is involved in this process. We find that ubiquitylation causes the dissociation of BubR1 from Cdc20 in MCC and suggest that this may lead to the release of MCC components from APC/C. BubR1 in MCC is ubiquitylated by APC/C, although to a lesser degree than Cdc20. The extent of BubR1 ubiquitylation was markedly increased in recombinant MCC that contained a lysine-less mutant of Cdc20. Mutation of lysine residues to arginines in the N-terminal region of BubR1 partially inhibited its ubiquitylation and slowed down the release of MCC from APC/C, provided that Cdc20 ubiquitylation was also blocked. It is suggested that ubiquitylation of both Cdc20 and BubR1 may be involved in their dissociation from each other and in the release of MCC components from APC/C.
机译:有丝分裂检查点系统通过防止过早进入后期,直到达到正确的染色体与有丝分裂纺锤体的双极连接,来确保有丝分裂中染色体分离的保真度。它可以促进由BubR1,Bub3,Cdc20和Mad2组成的有丝分裂检查点复合物(MCC)的组装,从而抑制后期促进复合物/环体(APC / C)泛素连接酶的活性。满足检查点要求时,将通过拆卸MCC来启动后期。先前的研究表明,APC / C结合的MCC的解离需要泛素化,并表明泛素化的目标是MCC的Cdc20成分。但是,仍然不清楚泛素化如何导致MCC从APC / C释放以及其分解,以及该过程是否涉及其他蛋白质的泛素化。我们发现泛素化会导致BubR1从Cdc20在MCC中解离,并表明这可能导致MPC组分从APC / C中释放出来。 MCC中的BubR1被APC / C泛素化,尽管程度低于Cdc20。 BubR1泛素化的程度在重组MCC中显着增加,该重组MCC中包含Cdc20的无赖氨酸突变体。 BubR1 N末端区域的赖氨酸残基突变为精氨酸会部分抑制其泛素化并减慢APC / C中MCC的释放,前提是Cdc20泛素化也被阻止。建议Cdc20和BubR1的泛素化可能涉及它们彼此的解离以及APC / C中MCC成分的释放。

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