Department of Chromosome Biology, Max Perutz Labs, University of Vienna, A-1030 Vienna, Austria.
Mol Biol Cell. 2022 Aug 1;33(9):ar85. doi: 10.1091/mbc.E21-11-0590. Epub 2022 Jun 15.
Chromosome biorientation is promoted by the four-member chromosomal passenger complex (CPC) through phosphorylation of incorrect kinetochore-microtubule attachments. During chromosome alignment, the CPC localizes to the inner centromere, the inner kinetochore, and spindle microtubules. Here we show that a small domain of the CPC subunit INCENP/Sli15 is required to target the complex to all three of these locations in budding yeast. This domain, the single alpha helix (SAH), is essential for phosphorylation of outer kinetochore substrates, chromosome segregation, and viability. By restoring the CPC to each of its three locations through targeted mutations and fusion constructs, we determined their individual contributions to chromosome biorientation. We find that only the inner centromere localization is sufficient for cell viability on its own. However, when combined, the inner kinetochore and microtubule binding activities are also sufficient to promote accurate chromosome segregation. Furthermore, we find that the two pathways target the CPC to different kinetochore attachment states, as the inner centromere-targeting pathway is primarily responsible for bringing the complex to unattached kinetochores. We have therefore discovered that two parallel localization pathways are each sufficient to promote CPC activity in chromosome biorientation, both depending on the SAH domain of INCENP/Sli15.
染色体的定向排列是通过由四个成员组成的染色体乘客复合物(CPC)通过磷酸化不正确的动粒微管连接来促进的。在染色体排列过程中,CPC 定位于着丝粒内中心体、着丝粒内和纺锤体微管。在这里,我们发现 CPC 亚基 INCENP/Sli15 的一个小结构域是将复合物靶向这三个位置的必需条件。这个结构域,即单一α螺旋(SAH),对于外动粒底物的磷酸化、染色体分离和生存能力是必不可少的。通过靶向突变和融合构建物将 CPC 恢复到其三个位置中的每一个,我们确定了它们各自对染色体定向排列的贡献。我们发现,只有内着丝粒定位本身就足以使细胞存活。然而,当它们结合在一起时,动粒和微管结合活性也足以促进准确的染色体分离。此外,我们发现这两种途径将 CPC 靶向不同的动粒附着状态,因为内着丝粒靶向途径主要负责将复合物带到未附着的动粒上。因此,我们发现两种平行的定位途径都足以促进 CPC 在染色体定向排列中的活性,这两种途径都依赖于 INCENP/Sli15 的 SAH 结构域。