Vaur Sabine, Cubizolles Fabien, Plane Guillaume, Genier Sylvie, Rabitsch Peter K, Gregan Juraj, Nasmyth Kim, Vanoosthuyse Vincent, Hardwick Kevin G, Javerzat Jean-Paul
Centre National de la Recherche Scientifique, Institut de Biochimie et Génétique Cellulaires, Unité mixte de recherche 5095, Bordeaux, F-33077, France.
Curr Biol. 2005 Dec 20;15(24):2263-70. doi: 10.1016/j.cub.2005.11.034.
Meiosis consists of a single round of DNA replication followed by two consecutive nuclear divisions. During the first division (MI), sister kinetochores must orient toward the same pole to favor reductional segregation. Correct chromosome segregation during the second division (MII) requires the retention of centromeric cohesion until anaphase II. The spindle checkpoint protein Bub1 is essential for both processes in fission yeast . When bub1 is deleted, the Shugoshin protein Sgo1 is not recruited to centromeres, cohesin Rec8 does not persist at centromeres, and sister-chromatid cohesion is lost by the end of MI. Deletion of bub1 also affects kinetochore orientation because sister centromeres can move to opposite spindle poles in approximately 30% of MI divisions. We show here that these two functions are separable within the Bub1 protein. The N terminus of Bub1 is necessary and sufficient for Sgo1 targeting to centromeres and the protection of cohesion, whereas the C-terminal kinase domain acts together with Sgo2, the second fission-yeast Shugoshin protein, to promote sister-kinetochore co-orientation during MI. Additional analyses suggest that the protection of centromeric cohesion does not operate when sister kinetochores attach to opposite spindle poles during MI. Sgo1-mediated protection of centromere cohesion might therefore be regulated by the mode of kinetochore attachment.
减数分裂包括一轮DNA复制,随后是连续两次核分裂。在第一次分裂(MI)期间,姐妹动粒必须朝向同一极,以利于减数分离。第二次分裂(MII)期间正确的染色体分离需要着丝粒黏连保留到后期II。纺锤体检查点蛋白Bub1对裂殖酵母中的这两个过程都是必不可少的。当bub1缺失时,守护蛋白Sgo1不会被招募到着丝粒,黏连蛋白Rec8不会在着丝粒持续存在,并且姐妹染色单体黏连在MI结束时丧失。bub1的缺失也会影响动粒的方向,因为在大约30%的MI分裂中,姐妹着丝粒可以移动到纺锤体的相反极。我们在此表明,这两种功能在Bub1蛋白中是可分离的。Bub1的N末端对于Sgo1靶向着丝粒和保护黏连是必要且充分的,而C末端激酶结构域与第二种裂殖酵母守护蛋白Sgo2共同作用,在MI期间促进姐妹动粒共向排列。进一步的分析表明,当姐妹动粒在MI期间附着到纺锤体的相反极时,着丝粒黏连的保护不起作用。因此,Sgo1介导的着丝粒黏连保护可能受动粒附着模式的调节。