Instituto de Biologia Molecular e Celular, Universidade do Porto, Porto, Portugal.
EMBO J. 2013 Jun 12;32(12):1761-77. doi: 10.1038/emboj.2013.109. Epub 2013 May 17.
Maintenance of genomic stability during eukaryotic cell division relies on the spindle assembly checkpoint (SAC) that prevents mitotic exit until all chromosomes are properly attached to the spindle. Polo is a mitotic kinase proposed to be involved in SAC function, but its role has remained elusive. We demonstrate that Polo and Aurora B functional interdependency comprises a positive feedback loop that promotes Mps1 kinetochore localization and activity. Expression of constitutively active Polo restores normal Mps1 kinetochore levels even after Aurora B inhibition, highlighting a role for Polo in Mps1 recruitment to unattached kinetochores downstream of Aurora B. We also show that Mps1 kinetochore localization is required for BubR1 hyperphosphorylation and formation of the 3F3/2 phosphoepitope. This is essential to allow recruitment of Cdc20 to unattached kinetochores and the assembly of anaphase-promoting complex/cyclosome-inhibitory complexes to levels that ensure long-term SAC activity. We propose a model in which Polo controls Mps1-dependent BubR1 phosphorylation to promote Cdc20 kinetochore recruitment and sustained SAC function.
真核细胞分裂过程中基因组稳定性的维持依赖于纺锤体组装检查点(SAC),该检查点可防止有丝分裂后期的出现,直到所有染色体都正确地连接到纺锤体上。Polo 是一种有丝分裂激酶,被认为参与 SAC 的功能,但它的作用仍然难以捉摸。我们证明 Polo 和 Aurora B 的功能相互依赖性构成了一个正反馈回路,促进了 Mps1 动粒的定位和活性。即使在 Aurora B 抑制后,组成性激活的 Polo 的表达也能恢复正常的 Mps1 动粒水平,这突出了 Polo 在 Aurora B 下游募集未连接动粒的 Mps1 中的作用。我们还表明,Mps1 动粒的定位对于 BubR1 的过度磷酸化和 3F3/2 磷酸化表位的形成是必需的。这对于允许 Cdc20 募集到未连接的动粒上,并使后期促进复合物/周期蛋白抑制复合物组装到确保长期 SAC 活性的水平是必不可少的。我们提出了一个模型,即 Polo 控制 Mps1 依赖性的 BubR1 磷酸化,以促进 Cdc20 动粒的募集和持续的 SAC 功能。