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A novel role for protein arginine deiminase 4 in pluripotency: The emerging role of citrullinated histone H1 in cellular programming

机译:蛋白质精氨酸脱亚氨酶4在多能性中的新作用:瓜氨酸组蛋白H1在细胞程序设计中的新兴作用

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摘要

Histone post-translational modifications (PTMs) alter the chromatin architecture, generating open and closed states, and these structural changes can modulate gene expression under specific cellular conditions. While methylation and acetylation are the best-characterized histone PTMs, citrullination by the protein arginine deiminases (PADs) represents another important player in this process. In addition to fine tuning chromatin structure at specific loci, histone citrullination can also promote rapid global chromatin decondensation during the formation of extracellular traps (ETs) in immune cells. Recent studies now show that PAD4-mediated citrullination of histone H1 at promoter elements can also promote localized chromatin decondensation in stem cells, thus regulating the pluripotent state. These observations suggest that PAD-mediated histone deimination profoundly affects chromatin structure, possibly above and beyond that of other PTMs. Additionally, these recent findings further enhance our understanding of PAD biology and the important contributions that these enzymes play in development, health, and disease
机译:组蛋白翻译后修饰(PTM)会改变染色质的结构,产生开放状态和封闭状态,并且这些结构变化可以调节特定细胞条件下的基因表达。尽管甲基化和乙酰化是最典型的组蛋白PTM,但蛋白质精氨酸脱亚氨酶(PAD)的瓜氨酸化是该过程中的另一个重要角色。除了微调特定位点的染色质结构外,组蛋白瓜氨酸化还可以促进免疫细胞中细胞外陷阱(ET)形成过程中快速的整体染色质去浓缩。现在的最新研究表明,PAD4介导的组蛋白H1在启动子元件上的瓜氨酸化还可以促进干细胞中染色质的局部缩聚,从而调节多能状态。这些观察结果表明,PAD介导的组蛋白脱除对染色质结构的影响深远,可能超过其他PTM。此外,这些最新发现进一步增强了我们对PAD生物学的理解,以及这些酶在发育,健康和疾病中的重要作用。

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