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雌性胚胎干细胞中的X连锁基因在X染色体失活开始之前带有表观遗传标记。

X-linked genes in female embryonic stem cells carry an epigenetic mark prior to the onset of X inactivation.

作者信息

O'Neill Laura P, Randall Tamzin E, Lavender Jayne, Spotswood Hugh T, Lee Jeannie T, Turner Bryan M

机构信息

Chromatin and Gene Expression Group, Anatomy Department, University of Birmingham Medical School, Birmingham B15 2TT, UK.

出版信息

Hum Mol Genet. 2003 Aug 1;12(15):1783-90. doi: 10.1093/hmg/ddg193.

Abstract

We use chromatin immunoprecipitation to show that genes on the two active X chromosomes in undifferentiated, XX female embryonic stem cells (ES cells) are marked by hyperacetylation of all core histones, hyper(di)methylation of H3 lysine 4 and hypo(di)methylation of H3 lysine 9, compared with autosomal genes or genes on the single active X in XY male cells. The mark is found on both coding and promoter regions. On differentiation, and after the onset of X inactivation, the mark is reversed on the inactive X, whose genes show extreme hypoacetylation of all four core histones, hypo(di)methylation of H3K4 and hyper(di)methylation of H3K9. The mark is retained on the active X in female ES cells for at least several days of differentiation, but is not present in adult females. The selective marking of X-linked genes in female ES cells in a way that distinguishes them from the equivalent genes in males, is unprecedented. We suggest that the mark forms part of a chromatin-based mechanism that restricts X-inactivation to cells with more than one X chromosome.

摘要

我们利用染色质免疫沉淀技术发现,与常染色体基因或XY雄性细胞中单一活性X染色体上的基因相比,未分化的XX雌性胚胎干细胞(ES细胞)中两条活性X染色体上的基因具有所有核心组蛋白的高度乙酰化、H3赖氨酸4的高度(二)甲基化以及H3赖氨酸9的低(二)甲基化特征。这种标记在编码区和启动子区域均有发现。在细胞分化以及X染色体失活开始后,失活X染色体上的这种标记会发生逆转,其基因表现出所有四种核心组蛋白的极低乙酰化、H3K4的低(二)甲基化以及H3K9的高(二)甲基化。在雌性ES细胞分化的至少几天时间里,这种标记会保留在活性X染色体上,但在成年雌性中则不存在。雌性ES细胞中X连锁基因的这种选择性标记方式使其有别于雄性中的等效基因,这是前所未有的。我们认为,这种标记是基于染色质的机制的一部分,该机制将X染色体失活限制在具有不止一条X染色体的细胞中。

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