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活性基因处组蛋白H3的二甲基赖氨酸36和三甲基赖氨酸36的空间分布。

Spatial distribution of di- and tri-methyl lysine 36 of histone H3 at active genes.

作者信息

Bannister Andrew J, Schneider Robert, Myers Fiona A, Thorne Alan W, Crane-Robinson Colyn, Kouzarides Tony

机构信息

Wellcome Trust/Cancer Research UK Gurdon Institute and Department of Pathology, Tennis Court Road, Cambridge, CB2 1QN, United Kingdom.

出版信息

J Biol Chem. 2005 May 6;280(18):17732-6. doi: 10.1074/jbc.M500796200. Epub 2005 Mar 10.

Abstract

Methylation of lysine 4 of histone H3 (K4/H3) is linked to transcriptional activity, whereas methylation of K9/H3 is tightly associated with gene inactivity. These are well characterized sites of methylation within histones, but there are numerous other, less characterized, sites of modification. In Saccharomyces cerevisiae, methylation of K36/H3 has been linked to active genes, but little is known about this methylation in higher eukaryotes. Here we analyzed for the first time the levels and spatial distribution of di- and tri-methyl (di- and tri-Me) K36/H3 in metazoan genes. We analyzed chicken genes that are developmentally regulated, constitutively active, or inactive. We found that active genes contain high levels of these modifications compared with inactive genes. Furthermore, in actively transcribed regions the levels of di- and tri-Me K36/H3 peak toward the 3' end of the gene. This is in striking contrast to the distributions of di- and tri-Me K4/H3, which peak early in actively transcribed regions. Thus, di/tri-Me K4/H3 and di/tri-Me K36/H3 are both useful markers of active genes, but their genic distribution indicates differing roles. Our data suggest that the unique spatial distribution of di- and tri-Me K36/H3 plays a role in transcriptional termination and/or early RNA processing.

摘要

组蛋白H3赖氨酸4位点(K4/H3)的甲基化与转录活性相关,而K9/H3的甲基化则与基因失活紧密相关。这些是组蛋白内特征明确的甲基化位点,但还有许多其他特征较少的修饰位点。在酿酒酵母中,K36/H3的甲基化与活跃基因相关,但在高等真核生物中对这种甲基化了解甚少。在这里,我们首次分析了后生动物基因中二甲基和三甲基(di-和tri-Me)K36/H3的水平和空间分布。我们分析了在发育过程中受到调控、组成型活跃或失活的鸡基因。我们发现,与失活基因相比,活跃基因含有高水平的这些修饰。此外,在活跃转录区域,二甲基和三甲基K36/H3的水平在基因的3'端达到峰值。这与二甲基和三甲基K4/H3的分布形成了鲜明对比,后者在活跃转录区域的早期达到峰值。因此,二/三甲基K4/H3和二/三甲基K36/H3都是活跃基因的有用标记,但它们在基因中的分布表明了不同的作用。我们的数据表明,二甲基和三甲基K36/H3独特的空间分布在转录终止和/或早期RNA加工中发挥作用。

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