Ludwig Institute for Cancer Research and 2 Department of Cellular and Molecular Medicine, University of California, San Diego, La Jolla, CA 92037.
J Cell Biol. 2014 Mar 3;204(5):647-57. doi: 10.1083/jcb.201311015. Epub 2014 Feb 24.
Recruitment of Mad1-Mad2 complexes to unattached kinetochores is a central event in spindle checkpoint signaling. Despite its importance, the mechanism that recruits Mad1-Mad2 to kinetochores is unclear. In this paper, we show that MAD-1 interacts with BUB-1 in Caenorhabditis elegans. Mutagenesis identified specific residues in a segment of the MAD-1 coiled coil that mediate the BUB-1 interaction. In addition to unattached kinetochores, MAD-1 localized between separating meiotic chromosomes and to the nuclear periphery. Mutations in the MAD-1 coiled coil that selectively disrupt interaction with BUB-1 eliminated MAD-1 localization to unattached kinetochores and between meiotic chromosomes, both of which require BUB-1, and abrogated checkpoint signaling. The identified MAD-1 coiled-coil segment interacted with a C-terminal region of BUB-1 that contains its kinase domain, and mutations in this region prevented MAD-1 kinetochore targeting independently of kinase activity. These results delineate an interaction between BUB-1 and MAD-1 that targets MAD-1-MAD-2 complexes to kinetochores and is essential for spindle checkpoint signaling.
Mad1-Mad2 复合物招募到无附着的动粒是纺锤体检验点信号传递的一个核心事件。尽管其很重要,但招募 Mad1-Mad2 到动粒的机制还不清楚。在本文中,我们展示了 Mad1 在秀丽隐杆线虫中与 BUB-1 相互作用。突变鉴定了 Mad1 卷曲螺旋中的特定残基,介导了 BUB-1 的相互作用。除了无附着的动粒,Mad1 还定位于分离的减数分裂染色体之间和核周。Mad1 卷曲螺旋中的突变选择性地破坏了与 BUB-1 的相互作用,消除了 Mad1 在无附着动粒和减数分裂染色体之间的定位,这两者都需要 BUB-1,并且破坏了检验点信号传递。鉴定的 Mad1 卷曲螺旋片段与 BUB-1 的 C 末端区域相互作用,该区域包含其激酶结构域,而该区域的突变独立于激酶活性阻止了 Mad1 向动粒的靶向。这些结果描绘了 BUB-1 和 Mad1 之间的相互作用,该相互作用将 Mad1-Mad2 复合物靶向动粒,对于纺锤体检验点信号传递是必需的。