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Hos1 是黏连蛋白 Smc3 亚基的赖氨酸去乙酰化酶。

Hos1 is a lysine deacetylase for the Smc3 subunit of cohesin.

机构信息

Stowers Institute for Medical Research, Kansas City, MO 64110, USA.

出版信息

Curr Biol. 2010 Sep 28;20(18):1660-5. doi: 10.1016/j.cub.2010.08.019.

Abstract

Chromosome cohesion is a cell-cycle-regulated process in which sister chromatids are held together from the time of replication until the time of separation at the metaphase-to-anaphase transition, ensuring accurate chromosome segregation [1-9]. Chromosome cohesion is established during S phase, and this process requires the four subunits of the cohesin complex (Smc1, Smc3, Mcd1/Scc1, and Irr1/Scc3) and the acetyltransferase Eco1 [10-13]. Acetylation of Smc3 by Eco1 at two evolutionarily conserved lysine residues promotes cohesion establishment during S phase in budding yeast and humans [14-16]. Here we report that Hos1, a member of the evolutionarily conserved class I histone deacetylase family, acts as a deacetylase for Smc3 in S. cerevisiae. We examine the Smc3 acetylation level in nine histone deacetylase deletion strains and find that the acetylation level is increased specifically in a hos1Δ strain post-S phase. Coimmunoprecipitation experiments show that Hos1 interacts with Smc3 and that the interaction is most pronounced as cells reach anaphase. We provide direct evidence that Hos1 can deacetylate Smc3 and retains a soluble pool of deacetylated Smc3. Overexpression of Hos1 results in less acetylation of Smc3 and cohesion defects in both WT and eco1 mutant strains; mutation of the Hos1 active site abolishes the defects. Hos1 may help to maintain a pool of unacetylated Smc3 that can be used for new chromosome cohesion.

摘要

染色体凝聚是一个细胞周期调控的过程,在此过程中,姐妹染色单体在复制后一直保持在一起,直到在中期到后期的转换过程中分离,从而确保染色体的准确分离[1-9]。染色体凝聚是在 S 期建立的,这个过程需要黏连蛋白复合体的四个亚基(Smc1、Smc3、Mcd1/Scc1 和 Irr1/Scc3)和乙酰转移酶 Eco1[10-13]。Eco1 在两个进化上保守的赖氨酸残基上将 Smc3 乙酰化,促进了芽殖酵母和人类 S 期的凝聚建立[14-16]。在这里,我们报告说,Hos1,一个进化上保守的 I 类组蛋白去乙酰化酶家族的成员,在酿酒酵母中作为 Smc3 的去乙酰化酶发挥作用。我们在九个组蛋白去乙酰化酶缺失菌株中检查 Smc3 的乙酰化水平,发现乙酰化水平在 S 期后特别是在 hos1Δ 菌株中增加。免疫共沉淀实验表明,Hos1 与 Smc3 相互作用,并且当细胞进入后期时,这种相互作用最为明显。我们提供了直接的证据表明 Hos1 可以去乙酰化 Smc3,并保留可溶性的去乙酰化 Smc3 池。Hos1 的过表达导致 Smc3 的乙酰化减少,并且在 WT 和 eco1 突变菌株中都存在凝聚缺陷;Hos1 活性位点的突变消除了这些缺陷。Hos1 可能有助于维持未乙酰化的 Smc3 池,以备新的染色体凝聚使用。

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