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Differential Salt Fractionation of Nuclei to Analyze Chromatin-associated Proteins from Cultured Mammalian Cells

机译:核的盐分馏以分析培养的哺乳动物细胞的染色质相关蛋白

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摘要

Nucleosomes are the core units of cellular chromatin and are comprised of 147 base pairs (bp) of DNA wrapped around an octamer of histone proteins. Proteins such as chromatin remodelers, transcription factors, and DNA repair proteins interact dynamically with chromatin to regulate access to DNA, control gene transcription, and maintain genome integrity. The extent of association with chromatin changes rapidly in response to stresses, such as immune activation, oxidative stress, or viral infection, resulting in downstream effects on chromatin conformation and transcription of target genes. To elucidate changes in the composition of proteins associated with chromatin under different conditions, we adapted existing protocols to isolate nuclei and fractionate cellular chromatin using a gradient of salt concentrations. The presence of specific proteins in different salt fractions can be assessed by Western blotting or mass spectrometry, providing insight into the degree to which they are associated with chromatin.
机译:核小体是细胞染色质的核心单元,由包裹在组蛋白八聚体周围的147个碱基对(bp)的DNA组成。诸如染色质重塑剂,转录因子和DNA修复蛋白之类的蛋白质与染色质动态相互作用,以调节对DNA的访问,控制基因转录并维持基因组完整性。与染色质缔合的程度响应于诸如免疫活化,氧化应激或病毒感染之类的压力而迅速变化,从而导致对染色质构象和靶基因转录的下游影响。为了阐明在不同条件下与染色质相关的蛋白质组成的变化,我们对现有方案进行了调整,以分离盐核并使用盐浓度梯度分离细胞染色质。可以通过蛋白质印迹法或质谱法评估不同盐级分中特定蛋白质的存在,从而深入了解它们与染色质的结合程度。

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