首页> 外文期刊>Nature Genetics >Differentially methylated forms of histone H3 show unique association patterns with inactive human X chromosomes.
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Differentially methylated forms of histone H3 show unique association patterns with inactive human X chromosomes.

机译:组蛋白H3的差异甲基化形式显示了与非活动人类X染色体的独特关联模式。

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Studies of histone methylation have shown that H3 can be methylated at lysine 4 (Lys4) or lysine 9 (Lys9). Whereas H3-Lys4 methylation has been correlated with active gene expression, H3-Lys9 methylation has been linked to gene silencing and assembly of heterochromatin in mouse and Schizosaccharomyces pombe. The chromodomain of mouse HP1 (and Swi6 in S. pombe) binds H3 methylated at Lys9, and methylation at this site is thought to mark and promote heterochromatin assembly. We have used a well-studied model of mammalian epigenetic silencing, the human inactive X chromosome, to show that enrichment for H3 methylated at Lys9 is also a distinguishing mark of facultative heterochromatin. In contrast, H3 methylated at Lys4 is depleted in the inactive X chromosome, except in three 'hot spots' of enrichment along its length. Chromatin immunoprecipitation analyses further show that Lys9 methylation is associated with promoters of inactive genes, whereas Lys4 methylation is associated with active genes on the X chromosome. These data demonstrate that differential methylation at two distinct sites of the H3 amino terminus correlates with contrasting gene activities and may be part of a 'histone code' involved in establishing and maintaining facultative heterochromatin.
机译:组蛋白甲基化的研究表明,H3可以在赖氨酸4(Lys4)或赖氨酸9(Lys9)处甲基化。尽管H3-Lys4甲基化与活跃的基因表达相关,但H3-Lys9甲基化已与小鼠和裂殖酵母中的基因沉默和异染色质的组装有关。小鼠HP1(和粟酒裂殖酵母中的Swi6)的色域与在Lys9甲基化的H3结合,该位点的甲基化被认为是标记并促进异染色质组装。我们已经使用了经过充分研究的哺乳动物表观遗传沉默模型,即人的非活动X染色体,以显示在Lys9处甲基化的H3的富集也是兼性异染色质的区别标记。相比之下,在Lys4处甲基化的H3在无活性的X染色体上耗竭,除了在其长度上的三个“热点”富集。染色质免疫沉淀分析进一步表明,Lys9甲基化与非活性基因的启动子有关,而Lys4甲基化与X染色体上的活性基因有关。这些数据表明,在H3氨基末端的两个不同位点处的甲基化差异与相对的基因活性相关,并且可能是参与建立和维持兼性异染色质的“组蛋白密码”的一部分。

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