Friedrich Miescher Laboratory of the Max Planck Society, Tübingen, Germany.
EMBO Rep. 2014 Mar;15(3):291-8. doi: 10.1002/embr.201338114. Epub 2014 Jan 29.
The spindle assembly checkpoint inhibits anaphase until all chromosomes have become attached to the mitotic spindle. A complex between the checkpoint proteins Mad1 and Mad2 provides a platform for Mad2:Mad2 dimerization at unattached kinetochores, which enables Mad2 to delay anaphase. Here, we show that mutations in Bub1 and within the Mad1 C-terminal domain impair the kinetochore localization of Mad1:Mad2 and abrogate checkpoint activity. Artificial kinetochore recruitment of Mad1 in these mutants co-recruits Mad2; however, the checkpoint remains non-functional. We identify specific mutations within the C-terminal head of Mad1 that impair checkpoint activity without affecting the kinetochore localization of Bub1, Mad1 or Mad2. Hence, Mad1 potentially in conjunction with Bub1 has a crucial role in checkpoint signalling in addition to presenting Mad2.
纺锤体组装检查点会抑制后期,直到所有染色体都与有丝分裂纺锤体连接。检查点蛋白 Mad1 和 Mad2 之间的复合物在未连接的动粒上为 Mad2:Mad2 二聚体化提供了一个平台,使 Mad2 能够延迟后期。在这里,我们表明 Bub1 中的突变和 Mad1 C 端结构域内的突变会损害 Mad1:Mad2 在动粒上的定位,并消除检查点活性。在这些突变体中,人工招募动粒上的 Mad1 会共同招募 Mad2;然而,检查点仍然没有功能。我们确定了 Mad1 C 端头部内的特定突变,这些突变会损害检查点活性,而不会影响 Bub1、Mad1 或 Mad2 在动粒上的定位。因此,Mad1 除了呈现 Mad2 外,还可能与 Bub1 一起在检查点信号转导中发挥关键作用。