Institute of Molecular Life Sciences, University of Zurich, 8057 Zurich, Switzerland.
Mol Biol Cell. 2012 Jun;23(12):2275-91. doi: 10.1091/mbc.E12-02-0117. Epub 2012 May 2.
Monopolar spindle 1 (Mps1) is essential for the spindle assembly checkpoint (SAC), which prevents anaphase onset in the presence of misaligned chromosomes. Moreover, Mps1 kinase contributes in a SAC-independent manner to the correction of erroneous initial attachments of chromosomes to the spindle. Our characterization of the Drosophila homologue reveals yet another SAC-independent role. As in yeast, modest overexpression of Drosophila Mps1 is sufficient to delay progression through mitosis during metaphase, even though chromosome congression and metaphase alignment do not appear to be affected. This delay in metaphase depends on the SAC component Mad2. Although Mps1 overexpression in mad2 mutants no longer causes a metaphase delay, it perturbs anaphase. Sister kinetochores barely move apart toward spindle poles. However, kinetochore movements can be restored experimentally by separase-independent resolution of sister chromatid cohesion. We propose therefore that Mps1 inhibits sister chromatid separation in a SAC-independent manner. Moreover, we report unexpected results concerning the requirement of Mps1 dimerization and kinase activity for its kinetochore localization in Drosophila. These findings further expand Mps1's significance for faithful mitotic chromosome segregation and emphasize the importance of its careful regulation.
单核纺锤体 1(Mps1)对于纺锤体组装检查点(SAC)是必不可少的,该检查点可防止染色体未对准时进入后期。此外,Mps1 激酶以 SAC 非依赖性的方式有助于校正染色体与纺锤体的初始错误附着。我们对果蝇同源物的特性分析揭示了另一个 SAC 非依赖性的作用。与酵母一样,适度过表达果蝇 Mps1 足以延迟有丝分裂中期的进展,尽管染色体聚集和中期对齐似乎不受影响。这种中期延迟依赖于 SAC 成分 Mad2。尽管 Mps1 在 mad2 突变体中的过表达不再导致中期延迟,但它会扰乱后期。姐妹动粒几乎没有向纺锤体两极分开移动。然而,通过姐妹染色单体分离酶独立解决姐妹染色单体的黏附,可以在实验中恢复动粒运动。因此,我们提出 Mps1 以 SAC 非依赖性的方式抑制姐妹染色单体的分离。此外,我们还报告了有关 Mps1 二聚化和激酶活性对其在果蝇中着丝粒定位的要求的意外结果。这些发现进一步扩展了 Mps1 对有丝分裂染色体正确分离的重要性,并强调了其精细调控的重要性。