Nightingale Karl P, Gendreizig Susanne, White Darren A, Bradbury Charlotte, Hollfelder Florian, Turner Bryan M
Chromatin and Gene Expression Group, Institute of Biomedical Research, University of Birmingham Medical School, Birmingham B15 2TT, United Kingdom and.
Department of Biochemistry, University of Cambridge, Cambridge CB2 1GA, United Kingdom.
J Biol Chem. 2007 Feb 16;282(7):4408-4416. doi: 10.1074/jbc.M606773200. Epub 2006 Dec 13.
Histones are subject to a wide variety of post-translational modifications that play a central role in gene activation and silencing. We have used histone modification-specific antibodies to demonstrate that two histone modifications involved in gene activation, histone H3 acetylation and H3 lysine 4 methylation, are functionally linked. This interaction, in which the extent of histone H3 acetylation determines both the abundance and the "degree" of H3K4 methylation, plays a major role in the epigenetic response to histone deacetylase inhibitors. A combination of in vivo knockdown experiments and in vitro methyltransferase assays shows that the abundance of H3K4 methylation is regulated by the activities of two opposing enzyme activities, the methyltransferase MLL4, which is stimulated by acetylated substrates, and a novel and as yet unidentified H3K4me3 demethylase.
组蛋白会经历各种各样的翻译后修饰,这些修饰在基因激活和沉默中起着核心作用。我们使用组蛋白修饰特异性抗体来证明参与基因激活的两种组蛋白修饰,即组蛋白H3乙酰化和H3赖氨酸4甲基化,在功能上是相关联的。这种相互作用中,组蛋白H3乙酰化的程度决定了H3K4甲基化的丰度和“程度”,在对组蛋白去乙酰化酶抑制剂的表观遗传反应中起主要作用。体内敲低实验和体外甲基转移酶测定的结合表明,H3K4甲基化的丰度受两种相反酶活性的调节,即受乙酰化底物刺激的甲基转移酶MLL4和一种新型且尚未鉴定的H3K4me3去甲基化酶的活性调节。