Waterborg J H
Division of Cell Biology and Biophysics, School of Biological Sciences, University of Missouri, Kansas City, Missouri 64110-2499, USA.
Biochemistry. 2001 Feb 27;40(8):2599-605. doi: 10.1021/bi002480c.
Rates of turnover for the posttranslational acetylation of core histones were measured in logarithmically growing yeast cells by radioactive acetate labeling to near steady-state conditions. On average, acetylation half-lives were approximately 15 min for histone H4, 10 min for histone H3, 4 min for histone H2B, and 5 min for histone H2A. These rates were much faster than the several hours that have previously been reported for the rate of general histone acetylation and deacetylation in yeast. The current estimates are in line with changes in histone acetylation detected directly at specific chromatin locations and the speed of changes in gene expression that can be observed. These results emphasize that histone acetylation within chromatin is subject to constant flux. Detailed analysis revealed that the turnover rates for acetylation of histone H3 are the same from mono- through penta-acetylated forms. A large fraction of acetylated histone H3, including possibly all tetra- and penta-acetylated forms, appears subject to acetylation turnover. In contrast, the rate of acetylation turnover for mono- and di-acetylated forms of histones H4 and H2B, and the fraction subject to acetylation turnover, was lower than for multi-acetylated forms of these histones. This difference may reflect the difference in location of these histones within the nucleosome, a difference in the spectrum of histone-specific acetylating and deacetylating enzymes, and a difference in the role of acetylation in different histones.
通过放射性乙酸盐标记至接近稳态条件,在对数生长期的酵母细胞中测量核心组蛋白翻译后乙酰化的周转率。平均而言,组蛋白H4的乙酰化半衰期约为15分钟,组蛋白H3为10分钟,组蛋白H2B为4分钟,组蛋白H2A为5分钟。这些速率比先前报道的酵母中一般组蛋白乙酰化和去乙酰化速率的数小时要快得多。目前的估计与在特定染色质位置直接检测到的组蛋白乙酰化变化以及可观察到的基因表达变化速度一致。这些结果强调染色质内的组蛋白乙酰化处于不断变化之中。详细分析表明,组蛋白H3从单乙酰化到五乙酰化形式的乙酰化周转率是相同的。很大一部分乙酰化的组蛋白H3,可能包括所有四乙酰化和五乙酰化形式,似乎都经历乙酰化周转。相比之下,组蛋白H4和H2B的单乙酰化和二乙酰化形式的乙酰化周转率以及经历乙酰化周转的部分低于这些组蛋白的多乙酰化形式。这种差异可能反映了这些组蛋白在核小体内位置的差异、组蛋白特异性乙酰化和去乙酰化酶谱的差异以及乙酰化在不同组蛋白中作用的差异。