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在姐妹染色单体黏合的建立过程中需要 SUMO 依赖性步骤。

A SUMO-dependent step during establishment of sister chromatid cohesion.

机构信息

Departament de Ciències Mèdiques Bàsiques, Institut de Recerca Biomèdica de Lleida, Universitat de Lleida, Avinguda Alcalde Rovira Roure 80, 25198 Lleida, Spain.

出版信息

Curr Biol. 2012 Sep 11;22(17):1576-81. doi: 10.1016/j.cub.2012.06.046. Epub 2012 Jul 5.

Abstract

Cohesin is a protein complex that ties sister DNA molecules from the time of DNA replication until the metaphase to anaphase transition. Current models propose that the association of the Smc1, Smc3, and Scc1/Mcd1 subunits creates a ring-shaped structure that entraps the two sister DNAs. Cohesin is essential for correct chromosome segregation and recombinational repair. Its activity is therefore controlled by several posttranslational modifications, including acetylation, phosphorylation, sumoylation, and site-specific proteolysis. Here we show that cohesin sumoylation occurs at the time of cohesion establishment, after cohesin loading and ATP binding, and independently from Eco1-mediated cohesin acetylation. In order to test the functional relevance of cohesin sumoylation, we have developed a novel approach in budding yeast to deplete SUMO from all subunits in the cohesin complex, based on fusion of the Scc1 subunit to a SUMO peptidase Ulp domain (UD). Downregulation of cohesin sumoylation is lethal, and the Scc1-UD chimeras have a failure in sister chromatid cohesion. Strikingly, the unsumoylated cohesin rings are acetylated. Our findings indicate that SUMO is a novel molecular determinant for the establishment of sister chromatid cohesion, and we propose that SUMO is required for the entrapment of sister chromatids during the acetylation-mediated closure of the cohesin ring.

摘要

着丝粒蛋白复合体(cohesin)在 DNA 复制后将姐妹染色单体连接在一起,直到有丝分裂中期到后期的转变。目前的模型提出,Smc1、Smc3 和 Scc1/Mcd1 亚基的结合形成了一个环装结构,将两个姐妹 DNA 包裹在其中。着丝粒蛋白复合体对于正确的染色体分离和重组修复至关重要。因此,其活性受到几种翻译后修饰的控制,包括乙酰化、磷酸化、SUMO 化和特定位点的蛋白水解。在这里,我们发现着丝粒蛋白复合体的 SUMO 化发生在黏合建立时,即在黏合蛋白加载和 ATP 结合之后,并且与 Eco1 介导的黏合蛋白乙酰化无关。为了测试着丝粒蛋白复合体 SUMO 化的功能相关性,我们在 budding yeast 中开发了一种新方法,基于 Scc1 亚基与 SUMO 肽酶 Ulp 结构域 (UD) 的融合,从黏合复合体的所有亚基中去除 SUMO。降低着丝粒蛋白复合体 SUMO 化水平是致命的,并且 Scc1-UD 嵌合体在姐妹染色单体黏合中失败。引人注目的是,未 SUMO 化的黏合蛋白环被乙酰化。我们的发现表明,SUMO 是建立姐妹染色单体黏合的一个新的分子决定因素,我们提出 SUMO 对于在乙酰化介导的黏合蛋白环闭合过程中姐妹染色单体的包裹是必需的。

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