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Analysis of epigenetic modifications of chromatin at specific gene loci by native chromatin immunoprecipitation of nucleosomes isolated using hydroxyapatite chromatography

机译:通过使用羟磷灰石色谱分离的核小体的天然染色质免疫沉淀,分析特定基因位点上的染色质表观遗传修饰

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摘要

Chromatin immunoprecipitation (ChIP) is routinely used to examine epigenetic modification of histones at specific genomic locations. However, covalent modifications of histone tails can serve as docking sites for chromatin regulatory factors. As such, association of these regulatory factors with chromatin could cause steric hindrance for antibody recognition, resulting in an underestimation of the relative enrichment of a given histone modification at specific loci. To overcome this problem, we have developed a native ChIP protocol to study covalent modification of histones that takes advantage of hydroxyapatite (HAP) chromatography to wash away chromatin-associated proteins before the immunoprecipitation of nucleosomes. This fast and simple procedure consists of five steps: nuclei isolation from cultured cells; fragmentation of chromatin using MNase; purification of nucleosomes using HAP; immunoprecipitation of modified nucleosomes; and qPCR analysis of DNA associated with modified histones. Nucleosomes prepared in this manner are free of contaminating proteins and permit an accurate evaluation of relative abundance of different covalent histone modifications at specific genomic loci. Completion of this protocol requires ~1.5 d.
机译:染色质免疫沉淀(ChIP)通常用于检查特定基因组位置组蛋白的表观遗传修饰。但是,组蛋白尾巴的共价修饰可作为染色质调节因子的对接位点。因此,这些调节因子与染色质的结合可能会导致抗体识别的空间障碍,从而导致低估了特定基因座上给定组蛋白修饰的相对富集程度。为克服此问题,我们开发了一种天然的ChIP方案来研究组蛋白的共价修饰,该修饰利用羟基磷灰石(HAP)色谱法在核小体免疫沉淀之前洗去了染色质相关蛋白。这个快速而简单的过程包括五个步骤:从培养细胞中分离细胞核;使用MNase裂解染色质;使用HAP纯化核小体;修饰的核小体的免疫沉淀;和与修饰的组蛋白相关的DNA的qPCR分析。以这种方式制备的核小体不含污染蛋白,可以准确评估特定基因组位点处不同共价组蛋白修饰的相对丰度。该协议的完成需要约1.5 d。

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