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首页> 外文期刊>Nucleic acids research >Elucidating combinatorial histone modifications and crosstalks by coupling histone-modifying enzyme with biotin ligase activity
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Elucidating combinatorial histone modifications and crosstalks by coupling histone-modifying enzyme with biotin ligase activity

机译:通过将组蛋白修饰酶与生物素连接酶活性偶联来阐明组合组蛋白修饰和串扰

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摘要

Histone post-translational modifications (PTMs) often form complex patterns of combinations and cooperate to specify downstream biological processes. In order to systemically analyse combinatorial PTMs and crosstalks among histone PTMs, we have developed a novel nucleosome purification method called Biotinylation-assisted Isolation of CO-modified Nucleosomes (BICON). This technique is based on physical coupling of the enzymatic activity of a histone-modifying enzyme with in vivo biotinylation by the biotin ligase BirA, and using streptavidin to purify the co-modified nucleosomes. Analysing the nucleosomes isolated by BICON allows the identification of PTM combinations that are enriched on the modified nucleosomes and function together within the nucleosome context. We used this new approach to study MSK1-mediated H3 phosphorylation and found that MSK1 not only directly phosphorylated H3, but also induced hyperacetylation of both histone H3 and H4 within the nucleosome. Moreover, we identified a novel crosstalk pathway between H3 phosphorylation and H4 acetylation on K12. Involvement of these acetyl marks in MSK1-mediated transcription was further confirmed by chromatin immunoprecipitation assays, thus validating the biological relevance of the BICON results. These studies serve as proof-of-principle for this new technical approach, and demonstrate that BICON can be further adapted to study PTMs and crosstalks associated with other histone-modifying enzymes.
机译:组蛋白翻译后修饰(PTM)通常形成复杂的组合模式,并共同指定下游的生物学过程。为了系统地分析组合PTM和组蛋白PTM之间的串扰,我们开发了一种新颖的核小体纯化方法,称为生物素化辅助分离的CO修饰核小体(BICON)。该技术基于组蛋白修饰酶的酶促活性与生物素连接酶BirA的体内生物素化的物理偶联,并使用链霉亲和素纯化共修饰的核小体。分析通过BICON分离的核小体,可以鉴定在修饰的核小体上富集并在核小体环境中一起起作用的PTM组合。我们使用这种新方法研究了MSK1介导的H3磷酸化,发现MSK1不仅直接磷酸化了H3,而且还诱导了核小体中组蛋白H3和H4的超乙酰化。此外,我们确定了K12上H3磷酸化和H4乙酰化之间的新型串扰通路。染色质免疫沉淀试验进一步证实了这些乙酰基标记参与MSK1介导的转录,从而验证了BICON结果的生物学相关性。这些研究是该新技术方法的原理证明,并证明BICON可以进一步用于研究与其他组蛋白修饰酶相关的PTM和串扰。

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