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组蛋白H5球状结构域上的两个DNA结合位点对于与整体及5S重构核小体的结合均是必需的。

Two DNA-binding sites on the globular domain of histone H5 are required for binding to both bulk and 5 S reconstituted nucleosomes.

作者信息

Duggan M M, Thomas J O

机构信息

Cambridge Centre for Molecular Recognition and Department of Biochemistry, University of Cambridge, 80 Tennis Court Road, Cambridge, CB2 1GA, UK.

出版信息

J Mol Biol. 2000 Nov 17;304(1):21-33. doi: 10.1006/jmbi.2000.4205.

Abstract

We have previously shown the existence of two DNA-binding sites on the globular domain of H5 (termed GH5), both of which are required for nucleosome organisation, as judged by the protection of a 166 bp chromatosome intermediate during micrococcal nuclease digestion of chromatin. This supports a model in which GH5 contacts two duplexes on the nucleosome. However, studies of a nucleosome assembled on the 5 S rRNA gene have argued against the requirement for two DNA-binding sites for chromatosome protection, which has implications for the role of linker histones. We have used this proposed difference in the requirement for a second site on the globular domain in the two models as a means of investigating whether bulk and reconstituted 5 S nucleosomes are indeed fundamentally different. GH5 protects a 166 bp chromatosome in both "bulk" and 5 S systems, and in both cases protection is abolished when all four basic residues in site II are replaced by alanine. Binding to four-way DNA junctions, which present a pair of juxtaposed duplexes, is also abolished. Single mutations of the basic residues did not abolish chromatosome protection in either system, or binding to four-way junctions, suggesting that the residues function as a cluster. Both bulk and 5 S nucleosomes thus require a functional second DNA-binding site on GH5 in order to bind properly to the nucleosome. This is likely to reflect a similar mode of binding in each case, in which two DNA duplexes are contacted in the nucleosome. There is no indication from these experiments that linker histones bind fundamentally differently to 5 S and bulk nucleosomes.

摘要

我们之前已经证明,在H5的球状结构域(称为GH5)上存在两个DNA结合位点,通过微球菌核酸酶消化染色质过程中对166 bp核小体核心颗粒中间体的保护作用判断,这两个位点对于核小体组装都是必需的。这支持了一种模型,即GH5与核小体上的两条双链体接触。然而,对在5 S rRNA基因上组装的核小体的研究反对为保护核小体核心颗粒需要两个DNA结合位点的观点,这对连接组蛋白的作用有影响。我们利用这两种模型中球状结构域上对第二个位点需求的这种假定差异,作为研究整体和重组的5 S核小体是否确实存在根本差异的一种手段。在“整体”和5 S系统中,GH5都能保护166 bp的核小体核心颗粒,并且在这两种情况下,当位点II中的所有四个碱性残基都被丙氨酸取代时,保护作用都会消失。与呈现一对并列双链体的四向DNA接头的结合也会消失。碱性残基的单个突变在任何一个系统中都不会消除核小体核心颗粒的保护作用,也不会消除与四向接头的结合,这表明这些残基作为一个簇发挥作用。因此,整体和5 S核小体都需要GH5上有一个功能性的第二个DNA结合位点,以便正确结合到核小体上。这可能反映了每种情况下类似的结合模式,即在核小体中接触两条DNA双链体。这些实验没有表明连接组蛋白与5 S核小体和整体核小体的结合方式存在根本差异。

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