Mishima Masanori, Pavicic Visnja, Grüneberg Ulrike, Nigg Erich A, Glotzer Michael
Research Institute of Molecular Pathology, Dr. Bohrgasse 7, A-1030 Vienna, Austria.
Nature. 2004 Aug 19;430(7002):908-13. doi: 10.1038/nature02767. Epub 2004 Jul 28.
The bipolar mitotic spindle is responsible for segregating sister chromatids at anaphase. Microtubule motor proteins generate spindle bipolarity and enable the spindle to perform mechanical work. A major change in spindle architecture occurs at anaphase onset when central spindle assembly begins. This structure regulates the initiation of cytokinesis and is essential for its completion. Central spindle assembly requires the centralspindlin complex composed of the Caenorhabditis elegans ZEN-4 (mammalian orthologue MKLP1) kinesin-like protein and the Rho family GAP CYK-4 (MgcRacGAP). Here we describe a regulatory mechanism that controls the timing of central spindle assembly. The mitotic kinase Cdk1/cyclin B phosphorylates the motor domain of ZEN-4 on a conserved site within a basic amino-terminal extension characteristic of the MKLP1 subfamily. Phosphorylation by Cdk1 diminishes the motor activity of ZEN-4 by reducing its affinity for microtubules. Preventing Cdk1 phosphorylation of ZEN-4/MKLP1 causes enhanced metaphase spindle localization and defects in chromosome segregation. Thus, phosphoregulation of the motor domain of MKLP1 kinesin ensures that central spindle assembly occurs at the appropriate time in the cell cycle and maintains genomic stability.
双极有丝分裂纺锤体负责在后期分离姐妹染色单体。微管运动蛋白产生纺锤体双极性,并使纺锤体能够执行机械工作。当中心纺锤体组装开始时,纺锤体结构在后期起始阶段发生重大变化。这种结构调节胞质分裂的起始,并且对其完成至关重要。中心纺锤体组装需要由秀丽隐杆线虫ZEN-4(哺乳动物同源物MKLP1)驱动蛋白样蛋白和Rho家族GAP CYK-4(MgcRacGAP)组成的中心纺锤体复合物。在这里,我们描述了一种控制中心纺锤体组装时间的调节机制。有丝分裂激酶Cdk1/细胞周期蛋白B在MKLP1亚家族特有的碱性氨基末端延伸内的保守位点上磷酸化ZEN-4的运动结构域。Cdk1的磷酸化通过降低ZEN-4对微管的亲和力来降低其运动活性。阻止ZEN-4/MKLP1的Cdk1磷酸化会导致中期纺锤体定位增强和染色体分离缺陷。因此,MKLP1驱动蛋白运动结构域的磷酸化调节确保中心纺锤体组装在细胞周期的适当时间发生,并维持基因组稳定性。