【2h】

Shugoshin protects cohesin complexes at centromeres

机译:守护甜心保护着丝粒复合体着丝粒

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摘要

The different regulation of sister chromatid cohesion at centromeres and along chromosome arms is obvious during meiosis, because centromeric cohesion, but not arm cohesion, persists throughout anaphase of the first division. A protein required to protect centromeric cohesin Rec8 from separase cleavage has been identified and named shugoshin (or Sgo1) after shugoshin (‘guardian spirit’ in Japanese). It has become apparent that shugoshin shows marginal homology with Drosophila Mei-S332 and several uncharacterized proteins in other eukaryotic organisms. Because Mei-S332 is a protein previously shown to be required for centromeric cohesion in meiosis, it is now established that shugoshin represents a conserved protein family defined as a centromeric protector of Rec8 cohesin complexes in meiosis. The regional difference of sister chromatid cohesion is also observed during mitosis in vertebrates; the cohesion is much more robust at the centromere at metaphase, where it antagonizes the pulling force of spindle microtubules that attach the kinetochores from opposite poles. The human shugoshin homologue (hSgo1) is required to protect the centromeric localization of the mitotic cohesin, Scc1, until metaphase. Bub1 plays a crucial role in the localization of shugoshin to centromeres in both fission yeast and humans.
机译:在减数分裂期间,着丝粒和沿染色体臂的姐妹染色单体内聚力的不同调节是明显的,因为在第一次分裂的整个后期都存在着着丝粒内聚力而不是臂内聚力。已经确定了一种保护着丝粒黏着蛋白Rec8免受分离酶裂解作用的蛋白质,并以shugoshin(日语中的“守护精神”)命名为shugoshin(或Sgo1)。显然,人参信与果蝇Mei-S332以及其他真核生物中的几种未表征的蛋白质显示出边缘同源性。因为Mei-S332是先前显示的减数分裂中着丝粒凝聚所需的蛋白质,所以现在确定了shugoshin代表了一个保守的蛋白质家族,被定义为减数分裂中Rec8黏着蛋白复合物的着丝粒保护剂。在有丝分裂期间,在脊椎动物中也观察到了姐妹染色单体凝聚力的区域差异。凝聚力在中期的着丝粒处要强得多,在这种情况下,它可拮抗纺锤体微管的拉力,纺锤体微管从相反的两极附着动子体。需要人类shugoshin同源物(hSgo1)才能保护有丝分裂粘附素Scc1的着丝粒定位,直至中期。 Bub1在裂殖酵母和人类中将Shugoshin定位到着丝粒中起着至关重要的作用。

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