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Sth1p是酿酒酵母中Snf2p/Swi2p的同源物,是RSC中一种必需的ATP酶,在与组蛋白和染色质相关蛋白的相互作用方面与Snf/Swi不同。

Sth1p, a Saccharomyces cerevisiae Snf2p/Swi2p homolog, is an essential ATPase in RSC and differs from Snf/Swi in its interactions with histones and chromatin-associated proteins.

作者信息

Du J, Nasir I, Benton B K, Kladde M P, Laurent B C

机构信息

Department of Microbiology and Immunology and Morse Institute for Molecular Genetics, State University of New York, Brooklyn, New York 11203, USA.

出版信息

Genetics. 1998 Nov;150(3):987-1005. doi: 10.1093/genetics/150.3.987.

Abstract

The essential Sth1p is the protein most closely related to the conserved Snf2p/Swi2p in Saccharomyces cerevisiae. Sth1p purified from yeast has a DNA-stimulated ATPase activity required for its function in vivo. The finding that Sth1p is a component of a multiprotein complex capable of ATP-dependent remodeling of the structure of chromatin (RSC) in vitro, suggests that it provides RSC with ATP hydrolysis activity. Three sth1 temperature-sensitive mutations map to the highly conserved ATPase/helicase domain and have cell cycle and non-cell cycle phenotypes, suggesting multiple essential roles for Sth1p. The Sth1p bromodomain is required for wild-type function; deletion mutants lacking portions of this region are thermosensitive and arrest with highly elongated buds and 2C DNA content, indicating perturbation of a unique function. The pleiotropic growth defects of sth1-ts mutants imply a requirement for Sth1p in a general cellular process that affects several metabolic pathways. Significantly, an sth1-ts allele is synthetically sick or lethal with previously identified mutations in histones and chromatin assembly genes that suppress snf/swi, suggesting that RSC interacts differently with chromatin than Snf/Swi. These results provide a framework for understanding the ATP-dependent RSC function in modeling chromatin and its connection to the cell cycle.

摘要

必需的Sth1p是酿酒酵母中与保守的Snf2p/Swi2p关系最为密切的蛋白质。从酵母中纯化的Sth1p具有DNA刺激的ATP酶活性,这是其在体内发挥功能所必需的。Sth1p是一种能够在体外对染色质结构进行ATP依赖性重塑的多蛋白复合物(RSC)的组成成分,这一发现表明它为RSC提供ATP水解活性。三个sth1温度敏感突变定位于高度保守的ATP酶/解旋酶结构域,具有细胞周期和非细胞周期表型,提示Sth1p具有多种重要作用。Sth1p的溴结构域是野生型功能所必需的;缺失该区域部分的缺失突变体对温度敏感,会停滞在具有高度伸长芽和2C DNA含量的状态,表明一种独特功能受到干扰。sth1-ts突变体的多效性生长缺陷意味着在影响多个代谢途径的一般细胞过程中需要Sth1p。值得注意的是,一个sth1-ts等位基因与先前鉴定的组蛋白和染色质组装基因中的突变合并不良或致死,这些突变抑制snf/swi,这表明RSC与染色质的相互作用不同于Snf/Swi。这些结果为理解ATP依赖性RSC在染色质建模中的功能及其与细胞周期的联系提供了一个框架。

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