Shao Hengyi, Huang Yuejia, Zhang Liangyu, Yuan Kai, Chu Youjun, Dou Zhen, Jin Changjiang, Garcia-Barrio Minerva, Liu Xing, Yao Xuebiao
Anhui Key Laboratory of Cellular Dynamics and Chemical Biology, University of Science &Technology of China, Hefei 230027, China.
1] Anhui-MSM Joint Research Group for Cellular Dynamics, Hefei National Laboratory for Physical Sciences at Nanoscale, Hefei 230027, China [2] Department of Physiology, Morehouse School of Medicine, Atlanta, GA 30310, USA.
Sci Rep. 2015 Jul 24;5:12204. doi: 10.1038/srep12204.
Chromosome segregation in mitosis is orchestrated by the dynamic interactions between the kinetochore and spindle microtubules. The microtubule depolymerase mitotic centromere-associated kinesin (MCAK) is a key regulator for an accurate kinetochore-microtubule attachment. However, the regulatory mechanism underlying precise MCAK depolymerase activity control during mitosis remains elusive. Here, we describe a novel pathway involving an Aurora B-PLK1 axis for regulation of MCAK activity in mitosis. Aurora B phosphorylates PLK1 on Thr210 to activate its kinase activity at the kinetochores during mitosis. Aurora B-orchestrated PLK1 kinase activity was examined in real-time mitosis using a fluorescence resonance energy transfer-based reporter and quantitative analysis of native PLK1 substrate phosphorylation. Active PLK1, in turn, phosphorylates MCAK at Ser715 which promotes its microtubule depolymerase activity essential for faithful chromosome segregation. Importantly, inhibition of PLK1 kinase activity or expression of a non-phosphorylatable MCAK mutant prevents correct kinetochore-microtubule attachment, resulting in abnormal anaphase with chromosome bridges. We reason that the Aurora B-PLK1 signaling at the kinetochore orchestrates MCAK activity, which is essential for timely correction of aberrant kinetochore attachment to ensure accurate chromosome segregation during mitosis.
有丝分裂过程中的染色体分离是由动粒与纺锤体微管之间的动态相互作用所调控的。微管解聚酶有丝分裂着丝粒相关驱动蛋白(MCAK)是精确的动粒-微管附着的关键调节因子。然而,有丝分裂期间精确控制MCAK解聚酶活性的调控机制仍不清楚。在此,我们描述了一种涉及Aurora B-PLK1轴的新途径,用于在有丝分裂中调节MCAK活性。在有丝分裂期间,Aurora B在苏氨酸210位点磷酸化PLK1,以激活其在着丝粒处的激酶活性。使用基于荧光共振能量转移的报告基因和对天然PLK1底物磷酸化的定量分析,在实时有丝分裂中检测了Aurora B调控的PLK1激酶活性。反过来,活性PLK1在丝氨酸715位点磷酸化MCAK,这促进了其微管解聚酶活性,而该活性对于准确的染色体分离至关重要。重要的是,抑制PLK1激酶活性或表达不可磷酸化的MCAK突变体可阻止正确的动粒-微管附着,导致带有染色体桥的异常后期。我们推断,着丝粒处的Aurora B-PLK1信号传导协调了MCAK活性,这对于及时纠正异常的着丝粒附着以确保有丝分裂期间准确的染色体分离至关重要。