Unit of Biochemistry, Rappaport Faculty of Medicine, Technion-Israel Institute of Technology, Haifa 31096, Israel.
Proc Natl Acad Sci U S A. 2010 Mar 23;107(12):5351-6. doi: 10.1073/pnas.1001875107. Epub 2010 Mar 8.
The mitotic (or spindle assembly) checkpoint system ensures accurate segregation of chromosomes by delaying anaphase until all chromosomes are correctly attached to the mitotic spindle. This system acts by inhibiting the activity of the anaphase-promoting complex/cyclosome (APC/C) ubiquitin ligase to target securin for degradation. APC/C is inhibited by a mitotic checkpoint complex (MCC) composed of BubR1, Bub3, Mad2, and Cdc20. The molecular mechanisms of the inactivation of the mitotic checkpoint, including the release of APC/C from inhibition, remain obscure. It has been reported that polyubiquitylation by the APC/C is required for the inactivation of the mitotic checkpoint [Reddy SK, Rape M, Margansky WA, Kirschner MW (2007) Nature, 446:921-924]. We confirmed the involvement of polyubiquitylation, but found that another process, which requires ATP cleavage at the beta-gamma position (as opposed to alpha-beta bond scission involved in ubiquitylation), is essential for the release of APC/C from checkpoint inhibition. ATP (beta-gamma) cleavage is required both for the dissociation of MCC components from APC/C and for the disassembly of free MCC, whereas polyubiquitylation is involved only in the former process. We find that the requirement for ATP (beta-gamma) cleavage is not due to the involvement of the 26S proteasome and that the phenomena observed are not due to sustained activity of protein kinase Cdk1/cyclin B, caused by inhibition of the degradation of cyclin B. Thus, some other energy-consuming process is needed for the inactivation of the mitotic checkpoint.
有丝分裂(或纺锤体组装)检查点系统通过延迟后期直到所有染色体都正确附着到有丝分裂纺锤体上来确保染色体的准确分离。该系统通过抑制后期促进复合物/环体(APC/C)泛素连接酶的活性来抑制 securin 的降解来起作用。APC/C 被由 BubR1、Bub3、Mad2 和 Cdc20 组成的有丝分裂检查点复合物 (MCC) 抑制。有丝分裂检查点失活的分子机制,包括 APC/C 从抑制中释放,仍然不清楚。据报道,APC/C 的多泛素化对于有丝分裂检查点的失活是必需的[Reddy SK、Rape M、Margansky WA、Kirschner MW(2007)自然,446:921-924]。我们证实了多泛素化的参与,但发现另一个需要在β-γ位置进行 ATP 切割的过程(与涉及泛素化的α-β键断裂相反)对于 APC/C 从检查点抑制中释放是必需的。ATP(β-γ)切割对于 MCC 组件从 APC/C 的解离和游离 MCC 的组装都是必需的,而多泛素化仅参与前一过程。我们发现,对 ATP(β-γ)切割的需求不是由于涉及 26S 蛋白酶体,并且观察到的现象不是由于蛋白激酶 Cdk1/细胞周期蛋白 B 的持续活性引起的,这是由于细胞周期蛋白 B 的降解被抑制。因此,有丝分裂检查点失活需要其他耗能过程。