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Histone Deimination As a Response to Inflammatory Stimuli in Neutrophils

机译:组蛋白测定作为中性粒细胞对炎症刺激的反应

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Posttranslational modifications, such as the deimination of arginine to citrulline by peptidyl arginine deiminase (PAD4), change protein structure and function. For autoantigens, covalent modifications represent a mechanism to sidestep tolerance and stimulate autoimmunity. To examine conditions leading to histone deimination in neutrophils, we used Abs that detect citrullines in the N terminus of histone H3. Deimination was investigated in human neutrophils and HL-60 cells differentiated into granulocytes. We observed rapid and robust H3 deimination in HL-60 cells exposed to LPS, TNF, lipoteichoic acid, f-MLP, or hydrogen peroxide, which are stimuli that activate neutrophils. Importantly, we also observed H3 deimination in human neutrophils exposed to these stimuli. Citrullinated histones were identified as components of extracellular chromatin traps (NETs) produced by degranulating neutrophils. In contrast, apoptosis proceeded without detectable H3 deimination in HL-60 cells exposed to staurosporine or camptothecin. We conclude that histone deimination in neutrophils is induced in response to inflammatory stimuli and not by treatments that induce apoptosis. Our results further suggest that deiminated histone H3, a covalently modified form of a prominent nuclear autoantigen, is released to the extracellular space as part of the neutrophil response to infections. The possible association of a modified autoantigen with microbial components could, in predisposed individuals, increase the risk of autoimmunity.
机译:翻译后修饰,例如通过肽基精氨酸脱亚氨酶(PAD4)将精氨酸脱氨成瓜氨酸,会改变蛋白质的结构和功能。对于自身抗原,共价修饰代表回避耐受性和刺激自身免疫的机制。为了检查导致嗜中性粒细胞组蛋白脱氨的条件,我们使用了可检测组蛋白H3 N末端瓜氨酸的Abs。在人嗜中性粒细胞中检测了脱氨作用,并将HL-60细胞分化为粒细胞。我们在暴露于LPS,TNF,脂磷壁酸,f-MLP或过氧化氢的HL-60细胞中观察到了快速,稳定的H3脱氢,它们是激活嗜中性粒细胞的刺激物。重要的是,我们还观察到了暴露于这些刺激的人类嗜中性粒细胞中的H3脱氢。瓜氨酸化的组蛋白被鉴定为通过中性粒细胞脱粒产生的细胞外染色质陷阱(NETs)的组成部分。相反,在暴露于星形孢菌素或喜树碱的HL-60细胞中,凋亡在没有可检测到的H3脱氨的情况下进行。我们得出的结论是,嗜中性粒细胞中的组蛋白决定是由炎症刺激引起的,而不是由诱导凋亡的治疗引起的。我们的结果进一步表明,作为中性粒细胞对感染反应的一部分,脱氨基的组蛋白H3(一种突出的核自身抗原的共价修饰形式)被释放到细胞外空间。在易感人群中,修饰的自身抗原与微生物成分的可能关联可能会增加自身免疫的风险。

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