Department of Pathology and Cell Biology, Columbia University College of Physicians and Surgeons, New York, NY 10032, USA.
J Cell Biol. 2012 Jul 23;198(2):205-17. doi: 10.1083/jcb.201202152. Epub 2012 Jul 16.
How the state of spindle microtubule capture at the kinetochore is translated into mitotic checkpoint signaling remains largely unknown. In this paper, we demonstrate that the kinetochore-associated mitotic kinase BubR1 phosphorylates itself in human cells and that this autophosphorylation is dependent on its binding partner, the kinetochore motor CENP-E. This CENP-E-dependent BubR1 autophosphorylation at unattached kinetochores is important for a full-strength mitotic checkpoint to prevent single chromosome loss. Replacing endogenous BubR1 with a nonphosphorylatable BubR1 mutant, as well as depletion of CENP-E, the BubR1 kinase activator, results in metaphase chromosome misalignment and a decrease of Aurora B-mediated Ndc80 phosphorylation at kinetochores. Furthermore, expressing a phosphomimetic BubR1 mutant substantially reduces the incidence of polar chromosomes in CENP-E-depleted cells. Thus, the state of CENP-E-dependent BubR1 autophosphorylation in response to spindle microtubule capture by CENP-E is important for kinetochore function in achieving accurate chromosome segregation.
纺锤体微管在动粒上的捕获状态如何转化为有丝分裂检验点信号,在很大程度上仍然未知。在本文中,我们证明了动粒相关的有丝分裂激酶 BubR1 在人类细胞中自身磷酸化,并且这种自身磷酸化依赖于其结合伴侣动粒马达 CENP-E。在未附着的动粒上,这种依赖于 CENP-E 的 BubR1 自身磷酸化对于形成完整的有丝分裂检验点以防止单个染色体丢失是很重要的。用不可磷酸化的 BubR1 突变体替代内源性 BubR1,以及耗尽 BubR1 激酶激活剂 CENP-E,会导致中期染色体错位,并减少 Aurora B 介导的动粒处 Ndc80 的磷酸化。此外,表达磷酸模拟突变体 BubR1 会显著降低 CENP-E 耗尽细胞中极染色体的发生率。因此,CENP-E 依赖性 BubR1 自身磷酸化状态对动粒功能的响应,对于实现准确的染色体分离非常重要。