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酵母中的全局组蛋白乙酰化和去乙酰化

Global histone acetylation and deacetylation in yeast.

作者信息

Vogelauer M, Wu J, Suka N, Grunstein M

机构信息

Department of Biological Chemistry, UCLA School of Medicine and the Molecular Biology Institute, University of California, Los Angeles 90095, USA.

出版信息

Nature. 2000 Nov 23;408(6811):495-8. doi: 10.1038/35044127.

Abstract

Histone acetyltransferases and deacetylases can be targeted to promoters to activate or repress genes. For example, the histone acetyltransferase GCN5 is part of a yeast multiprotein complex that is recruited by the DNA-binding activator protein GCN4 (refs 1-3). The histone deacetylase RPD3 complex is recruited to DNA by the repressor UME6 (refs 4, 5); similar mechanisms exist in other eukaryotes. However, deletion of RPD3 also increases expression of the PHO5 gene that is repressed by nucleosomes, and regulated by GCN5 (ref. 10) but not by UME6. We have determined whether acetylation and deacetylation are promoter specific at PHO5, by using antibodies against acetylated lysine residues and chromatin immunoprecipitation to examine the acetylation state of a 4.25-kilobase region surrounding the PHO5 gene. Here we show that this region is acetylated extensively by ESA1 and GCN5 and deacetylated by HDA1 and RPD3, and that widespread histone modification affects three separate chromosomal regions examined, which total 22kb. Our data indicate that targeted modification occurs in a background of global acetylation and deacetylation that not only reduces basal transcription, but also allows a rapid return to the initial state of acetylation when targeting is removed.

摘要

组蛋白乙酰转移酶和去乙酰化酶可作用于启动子以激活或抑制基因。例如,组蛋白乙酰转移酶GCN5是酵母多蛋白复合物的一部分,该复合物由DNA结合激活蛋白GCN4募集(参考文献1 - 3)。组蛋白去乙酰化酶RPD3复合物由阻遏蛋白UME6募集至DNA(参考文献4, 5);其他真核生物中也存在类似机制。然而,RPD3的缺失也会增加受核小体抑制、由GCN5调控(参考文献10)但不受UME6调控的PHO5基因的表达。我们通过使用抗乙酰化赖氨酸残基抗体和染色质免疫沉淀法来检测PHO5基因周围4.25千碱基区域的乙酰化状态,从而确定乙酰化和去乙酰化在PHO5基因启动子处是否具有特异性。我们在此表明,该区域被ESA1和GCN5广泛乙酰化,并被HDA1和RPD3去乙酰化,且广泛的组蛋白修饰影响了所检测的三个独立染色体区域,总计22kb。我们的数据表明,靶向修饰发生在整体乙酰化和去乙酰化的背景下,这不仅降低了基础转录水平,而且在去除靶向作用后还能使乙酰化状态迅速恢复到初始状态。

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