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组蛋白变体 H2A.Z 转换两种稳定的表观遗传染色质状态。

The histone variant H2A.Z interconverts two stable epigenetic chromatin states.

机构信息

Department of Microbiology, Yong Loo Lin School of Medicine, National University of Singapore.

出版信息

Biochem J. 2011 Nov 1;439(3):487-95. doi: 10.1042/BJ20110791.

Abstract

The nucleosomes occupying the chromosomal start sites of transcription contain the histone H2A variant H2A.Z in place of H2A. Upon galactose induction, nucleosomes are evicted from the GAL1 locus in Saccharomyces cerevisiae cells. H2A.Z (which is encoded by the HTZ1 gene in S. cerevisiae) is required for the eviction of the GAL1 promoter nucleosome and for the transcriptional activation of the GAL1 gene; however, histones are also important for transcriptional repression and we asked in the present paper if H2A.Z also plays a role in the glucose repression of the GAL1 promoter. With the help of a fusion of the URA3 ORF (open reading frame) to the GAL1 promoter, we were able to detect two different epigenetic transcription states of the GAL1 promoter in glucose-grown cells lacking H2A.Z: a repressed state that is occupied by a H2A-containing nucleosome and a derepressed state that is nucleosome-free. These two chromatin states are inherited stably through many cell divisions. According to the model described in the present paper, the role of H2A.Z is to facilitate the addition and removal of promoter nucleosomes and to prevent the formation of unfavourable stable epigenetic chromatin structures, which are not in accordance with the environmental conditions.

摘要

占据转录染色体起始位点的核小体含有组蛋白 H2A 变体 H2A.Z 取代 H2A。在半乳糖诱导时,核小体从酿酒酵母细胞中的 GAL1 基因座中被逐出。H2A.Z(在酿酒酵母中由 HTZ1 基因编码)对于 GAL1 启动子核小体的逐出和 GAL1 基因的转录激活是必需的;然而,组蛋白对于转录抑制也很重要,我们在本文中询问 H2A.Z 是否也在 GAL1 启动子的葡萄糖抑制中发挥作用。借助URA3 ORF(开放阅读框)与 GAL1 启动子的融合,我们能够在缺乏 H2A.Z 的葡萄糖生长细胞中检测到 GAL1 启动子的两种不同表观遗传转录状态:被含有 H2A 的核小体占据的被抑制状态和无核小体的去抑制状态。这两种染色质状态通过许多细胞分裂稳定地遗传。根据本文所述的模型,H2A.Z 的作用是促进启动子核小体的添加和去除,并防止形成不符合环境条件的不利稳定表观遗传染色质结构。

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