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首页> 外文期刊>Nucleic acids research >Histone H3 phosphorylation near the nucleosome dyad alters chromatin structure
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Histone H3 phosphorylation near the nucleosome dyad alters chromatin structure

机译:组蛋白H3附近的组蛋白H3磷酸化改变染色质结构

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摘要

Nucleosomes contain ~146 bp of DNA wrapped around a histone protein octamer that controls DNA accessibility to transcription and repair complexes. Posttranslational modification (PTM) of histone proteins regulates nucleosome function. To date, only modest changes in nucleosome structure have been directly attributed to histone PTMs. Histone residue H3(T118) is located near the nucleosome dyad and can be phosphorylated. This PTM destabilizes nucleosomes and is implicated in the regulation of transcription and repair. Here, we report gel electrophoretic mobility, sucrose gradient sedimentation, thermal disassembly, micrococcal nuclease digestion and atomic force microscopy measurements of two DNA–histone complexes that are structurally distinct from nucleosomes. We find that H3(T118ph) facilitates the formation of a nucleosome duplex with two DNA molecules wrapped around two histone octamers, and an altosome complex that contains one DNA molecule wrapped around two histone octamers. The nucleosome duplex complex forms within short ~150 bp DNA molecules, whereas altosomes require at least ~250 bp of DNA and form repeatedly along 3000 bp DNA molecules. These results are the first report of a histone PTM significantly altering the nucleosome structure.
机译:核小体包含包裹在组蛋白八聚体周围的〜146 bp DNA,该八聚体控制DNA对转录和修复复合物的可及性。组蛋白的翻译后修饰(PTM)调节核小体功能。迄今为止,仅核小体结构的适度变化直接归因于组蛋白PTM。组蛋白残基H3(T118)位于核小体上,并且可以被磷酸化。该PTM使核小体不稳定,并参与转录和修复的调控。在这里,我们报道了两种结构不同于核小体的DNA-组蛋白复合物的凝胶电泳迁移率,蔗糖梯度沉降,热分解,微球菌核酸酶消化和原子力显微镜测量。我们发现,H3(T118ph)有助于形成一个核小体双链体,形成两个包裹在两个组蛋白八聚体周围的DNA分子,以及一个脂质体复合物,其中包含一个包裹在两个组蛋白八聚体周围的DNA分子。核小体双链体复合物在约150 bp的短DNA分子内形成,而高核糖体至少需要约250 bp的DNA,并沿3000 bp的DNA分子重复形成。这些结果是组蛋白PTM显着改变核小体结构的首次报道。

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