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苜蓿两种组蛋白H3变体的乙酰化和甲基化序列分析。

Sequence analysis of acetylation and methylation in two histone H3 variants of alfalfa.

作者信息

Waterborg J H

机构信息

Division of Cell Biology and Biophysics, School of Basic Life Sciences, University of Missouri, Kansas City 64110-2499.

出版信息

J Biol Chem. 1990 Oct 5;265(28):17157-61.

PMID:2211618
Abstract

Analysis of acetylation in the two histone H3 variants of alfalfa by acid/urea/Triton-polyacrylamide gel electrophoresis has established that the minor variant H3.2 has a 2-fold higher level of acetylation than the major variant H3.1. Purification and sequence analysis of both variants showed sequence identity across the complete amino-terminal domain, which contains the 6 modified lysines 4, 8, 14, 18, 23, and 27. The two proteins have different distributions for acetylation: mono-, di-, and tri-methylation. The higher level of acetylation of H3.2 was confirmed in a wider pattern across all 6 lysines. Lysine modification levels varied for all sites in both proteins between 5 and 95%, with combinations of one to four types of modification co-existing at each residue. Additional sequence analysis of the H3.1 and H3.2 proteins and of tryptic core peptides established that the two histones differ only in residues 31, 41, 87, and 90. This indicates that major histone H3.1 is the product of the major alfalfa histone H3 gene and makes it likely that H3.2 is the product of the minor H3 gene, known from a partial cDNA clone. The variant-specific differences in lysine modifications in protein domains with identical primary structures suggest that the pattern and level of lysine modifications may be directed by the distinct chromatin environments of the two histone H3 variants.

摘要

通过酸/尿素/曲拉通-聚丙烯酰胺凝胶电泳分析苜蓿中两种组蛋白H3变体的乙酰化情况,结果表明,次要变体H3.2的乙酰化水平比主要变体H3.1高2倍。对这两种变体进行纯化和序列分析,结果显示在整个氨基末端结构域存在序列一致性,该结构域包含6个修饰的赖氨酸残基4、8、14、18、23和27。这两种蛋白质在乙酰化、单甲基化、二甲基化和三甲基化方面具有不同的分布。H3.2较高的乙酰化水平在所有6个赖氨酸残基上都得到了更广泛的证实。两种蛋白质中所有位点的赖氨酸修饰水平在5%至95%之间变化,每个残基同时存在一至四种修饰类型的组合。对H3.1和H3.2蛋白质以及胰蛋白酶核心肽进行的额外序列分析表明,这两种组蛋白仅在第31、41、87和90位残基上存在差异。这表明主要组蛋白H3.1是苜蓿主要组蛋白H3基因的产物,并且很可能H3.2是次要H3基因的产物,这一点已从一个部分cDNA克隆中得知。在具有相同一级结构的蛋白质结构域中,赖氨酸修饰的变体特异性差异表明,赖氨酸修饰的模式和水平可能由两种组蛋白H3变体不同的染色质环境所决定。

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