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染色质内的组蛋白-组蛋白相互作用。推定的H2B-H2A和H2B-H4结合的初步表征。

Histone-histone interactions within chromatin. Preliminary characterization of presumptive H2B-H2A and H2B-H4 binding.

作者信息

Martinson H G, McCarthy B J

出版信息

Biochemistry. 1976 Sep 7;15(18):4126-31. doi: 10.1021/bi00663a033.

Abstract

Cyanogen bromide peptide analyses of cross-linked histones show that histone 2B possesses separate binding sites for histones 2A and 4. Various polymorphic forms of H2A and H4 in chromatin are bound to H2B through these binding sites. These interactions are thus a fundamental structural feature of chromatin. Additional data strongly suggest that H2B is bound to H2A and H4 simultaneously in vivo. Mouse L cells were treated with either tetranitromethane (TNM) or ultraviolet (uv) light at 280 nm in order to induce the cross-linking of histone 2B in their chromatin to either histone 4 or 2A. The characteristics of these cross-linking agents and the reactions they induce suggest that the cross-links define loci within the actual binding sites between these histones. Characterization of the cyanogen bromide peptide fragments of the H2B-H4 and H2B-H2A dimers showed that the C terminal half of H2B contains the link to H4 (also near its C terminus), whereas the N-terminal half contains the link to H2A. Treatment of the cells with both uv light and TNM results in the appearance of a single new trimer which we presume to be H2A-H2B-H4. We conclude form this that H2B interacts simultaneously with H2A and H4 in chromatin through separate binding sites. Further analysis shows that several acetylated subspecies of H4 are represented in the H2B-H4 dimer and that at least two of the polymorphic forms of H2A are present in the H2B-H2A dimer. These data reveal that the H2A-H2B-H4 association is an important underlying structural feature of chromatin.

摘要

对交联组蛋白进行溴化氰肽分析表明,组蛋白2B具有与组蛋白2A和4的独立结合位点。染色质中H2A和H4的各种多态形式通过这些结合位点与H2B结合。因此,这些相互作用是染色质的基本结构特征。更多数据有力地表明,H2B在体内同时与H2A和H4结合。用四硝基甲烷(TNM)或280nm的紫外线(uv)处理小鼠L细胞,以诱导其染色质中的组蛋白2B与组蛋白4或2A交联。这些交联剂的特性及其引发的反应表明,交联定义了这些组蛋白之间实际结合位点内的位点。对H2B-H4和H2B-H2A二聚体的溴化氰肽片段进行表征表明,H2B的C末端一半包含与H4的连接(也靠近其C末端),而N末端一半包含与H2A的连接。用uv光和TNM同时处理细胞会导致出现一种新的三聚体,我们推测其为H2A-H2B-H4。我们由此得出结论,H2B在染色质中通过独立的结合位点同时与H2A和H4相互作用。进一步分析表明,H2B-H4二聚体中存在几种乙酰化的H4亚类,并且H2B-H2A二聚体中存在至少两种H2A的多态形式。这些数据表明,H2A-H2B-H4关联是染色质的一个重要潜在结构特征。

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