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人类Bub1通过影响守护蛋白的定位来确定有丝分裂染色体上的持续黏连位点。

Human Bub1 defines the persistent cohesion site along the mitotic chromosome by affecting Shugoshin localization.

作者信息

Kitajima Tomoya S, Hauf Silke, Ohsugi Miho, Yamamoto Tadashi, Watanabe Yoshinori

机构信息

Laboratory of Chromosome Dynamics, Institute of Molecular and Cellular Biosciences, University of Tokyo, Yayoi, Tokyo 113-0032, Japan.

出版信息

Curr Biol. 2005 Feb 22;15(4):353-9. doi: 10.1016/j.cub.2004.12.044.

Abstract

Shugoshin (Sgo) proteins constitute a conserved protein family defined as centromeric protectors of Rec8-containing cohesin complexes in meiosis . In vertebrate mitosis, Scc1/Rad21-containing cohesin complexes are also protected at centromeres because arm cohesin, but not centromeric cohesin, is largely dissociated in pro- and prometaphase . The dissociation process is dependent on the activity of polo-like kinase (Plk1) and partly dependent on Aurora B . Recently, it has been demonstrated that vertebrate shugoshin is required for preserving centromeric cohesion during mitosis ; however, it was not addressed whether human shugoshin protects cohesin itself. Here, we show that the persistence of human Scc1 at centromeres in mitosis is indeed dependent on human Sgo1. In fission yeast, Sgo localization depends on Bub1, a conserved spindle checkpoint protein, which is enigmatically also required for chromosome congression during prometaphase in vertebrate cells. We demonstrate that human Sgo1 fails to localize at centromeres in Bub1-repressed cells, and centromeric cohesion is significantly loosened. Remarkably, in these cells, Sgo1 relocates to chromosomes all along their length and provokes ectopic protection from dissociation of Scc1 on chromosome arms. These results reveal a hitherto concealed role for human Bub1 in defining the persistent cohesion site of mitotic chromosomes.

摘要

守护蛋白(Sgo)构成一个保守的蛋白家族,被定义为减数分裂中含Rec8的黏连蛋白复合体的着丝粒保护因子。在脊椎动物的有丝分裂中,含Scc1/Rad21的黏连蛋白复合体在着丝粒处也受到保护,因为在前期和前中期,臂黏连蛋白而非着丝粒黏连蛋白会大量解离。解离过程依赖于polo样激酶(Plk1)的活性,部分依赖于极光激酶B(Aurora B)。最近有研究表明,脊椎动物的守护蛋白在有丝分裂期间对于维持着丝粒黏连是必需的;然而,人类守护蛋白是否保护黏连蛋白本身并未得到研究。在此,我们表明人类有丝分裂中着丝粒处Scc1的持续存在确实依赖于人类Sgo1。在裂殖酵母中,Sgo的定位依赖于Bub1,一种保守的纺锤体检查点蛋白,而在脊椎动物细胞的前中期,它对于染色体的汇聚也神秘地起着必需作用。我们证明,在Bub1被抑制的细胞中,人类Sgo1无法定位于着丝粒,着丝粒黏连会显著松弛。值得注意的是,在这些细胞中,Sgo1会重新定位于整个染色体的长度上,并引发对染色体臂上Scc1解离的异位保护。这些结果揭示了人类Bub1在定义有丝分裂染色体持续黏连位点方面迄今未被发现的作用。

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