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首页> 外文期刊>Frontiers in Cell and Developmental Biology >The Use of Mononucleosome Immunoprecipitation for Analysis of Combinatorial Histone Post-translational Modifications and Purification of Nucleosome-Interacting Proteins
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The Use of Mononucleosome Immunoprecipitation for Analysis of Combinatorial Histone Post-translational Modifications and Purification of Nucleosome-Interacting Proteins

机译:单核糖体免疫沉淀的使用进行分析,用于分析组合组蛋白的翻译后修饰和核细胞杂交蛋白的纯化

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The nucleosome is the principal structural unit of chromatin. Although many studies focus on individual histone post-translational modifications (PTMs) in isolation, it is important to recognize that multiple histone PTMs can function together or cross-regulate one another within the nucleosome context. In addition, different modifications or histone-binding surfaces can synergize to stabilize the binding of nuclear factors to nucleosomes. To facilitate these types of studies, we present here a step-by-step protocol for isolating high yields of mononucleosomes for biochemical analyses. Furthermore, we discuss differences and variations of the basic protocol used in different publications and characterize the relative abundance of selected histone PTMs and chromatin-binding proteins in the different chromatin fractions obtained by this method.
机译:核小体是染色质的主要结构单元。尽管许多研究专注于单独的单独组蛋白后翻译修饰(PTMS),但重要的是要识别出多个组蛋白PTM可以在核小体上下文中彼此相互作用。此外,不同的修饰或组蛋白结合表面可以协同稳定核因子与核体的结合。为了促进这些类型的研究,我们在此提出了一种分离用于分离高产核酸的生物化学分析的单核糖瓜的逐步方案。此外,我们讨论了不同出版物中使用的基本协议的差异和变化,并表征了通过该方法获得的不同染色质级分中所选组蛋白PTMS和染色质结合蛋白的相对丰度。

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