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The Proteomic Investigation of Chromatin Functional Domains Reveals Novel Synergisms among Distinct Heterochromatin Components

机译:染色质功能域的蛋白质组学研究揭示了不同的异染色质组分之间的新型协同作用。

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摘要

Chromatin is a highly dynamic, well-structured nucleoprotein complex of DNA and proteins that controls virtually all DNA transactions. Chromatin dynamicity is regulated at specific loci by the presence of various associated proteins, histones, post-translational modifications, histone variants, and DNA methylation. Until now the characterization of the proteomic component of chromatin domains has been held back by the challenge of enriching distinguishable, homogeneous regions for subsequent mass spectrometry analysis. Here we describe a modified protocol for chromatin immunoprecipitation combined with quantitative proteomics based on stable isotope labeling by amino acids in cell culture to identify known and novel histone modifications, variants, and complexes that specifically associate with silent and active chromatin domains. Our chromatin proteomics strategy revealed unique functional interactions among various chromatin modifiers, suggesting new regulatory pathways, such as a heterochromatin-specific modulation of DNA damage response involving H2A.X and WICH, both enriched in silent domains. Chromatin proteomics expands the arsenal of tools for deciphering how all the distinct protein components act together to enforce a given region-specific chromatin status.
机译:染色质是DNA和蛋白质的高度动态,结构良好的核蛋白复合物,可控制几乎所有DNA交易。染色质的动态性通过各种相关蛋白,组蛋白,翻译后修饰,组蛋白变体和DNA甲基化的存在而在特定位点调控。到目前为止,染色质结构域的蛋白质组学组成部分的表征一直受到挑战,因为在随后的质谱分析中要丰富可区分的均质区域。在这里,我们描述了一种染色质免疫沉淀的修饰方案,结合了基于蛋白质在细胞培养物中稳定同位素标记的定量蛋白质组学的定量蛋白质组学,以鉴定已知的和新颖的组蛋白修饰,变体和复合物,这些修饰物与沉默和活性的染色质结构域特别相关。我们的染色质蛋白质组学策略揭示了各种染色质修饰剂之间的独特功能相互作用,这提示了新的调控途径,例如涉及H2A.X和WICH的DNA损伤应答的异染色质特异性调节,两者均富含沉默域。染色质蛋白质组学扩展了用于解密所有不同蛋白质组分如何共同作用以增强特定区域特定染色质状态的工具库。

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