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组蛋白 H4 通过细胞膜通透性直接刺激中性粒细胞活化。

Histone H4 directly stimulates neutrophil activation through membrane permeabilization.

机构信息

Department of Medicine, Section of Hematology Oncology, Boston University School of Medicine, Boston, Massachusetts, USA.

出版信息

J Leukoc Biol. 2021 Apr;109(4):763-775. doi: 10.1002/JLB.3A0620-342R. Epub 2020 Aug 17.

Abstract

Extracellular histones have been implicated as a cause of tissue inflammatory injury in a variety of disorders including sepsis, lung, and liver diseases. However, little is known about their interactions with neutrophils and how this might contribute to injury. Here, it is shown that histone H4 acts as neutrophil activator by inducing hydrogen peroxide production, degranulation, cell adhesion, and IL-8 generation. Histone H4 caused permeabilization of the neutrophil membrane (a phenomenon described in other cell types) leading to accelerated cell death. H4 caused sustained rise in neutrophil intracellular calcium that is necessary for respiratory burst activation and degranulation. Convincing evidence was not found for TLRs or ATP receptors in H4 mediated activation. However, pertussis toxin and wortmannin (inhibitors of G protein and PI3K) inhibited H4-induced hydrogen peroxide production and degranulation. These studies suggest that release of histone H4 in sites of infection or inflammation may potentiate neutrophil activation and promote additional inflammatory responses. These studies may provide a better basis for developing novel therapeutic strategies to block neutrophil extracellular trap (NET) and H4-related pathology in sepsis and various forms of lung injury including that induced by viruses like influenza or SAR-CoV2.

摘要

细胞外组蛋白已被认为是多种疾病(包括败血症、肺部和肝脏疾病)中组织炎症损伤的原因。然而,人们对其与中性粒细胞的相互作用知之甚少,也不知道这如何导致损伤。本研究表明,组蛋白 H4 通过诱导过氧化氢产生、脱颗粒、细胞黏附和 IL-8 生成,充当中性粒细胞的激活剂。组蛋白 H4 导致中性粒细胞膜通透性(在其他细胞类型中描述的现象)增加,从而加速细胞死亡。H4 引起中性粒细胞细胞内钙离子持续升高,这对于呼吸爆发激活和脱颗粒是必需的。没有发现 TLR 或 ATP 受体在 H4 介导的激活中起作用。然而,百日咳毒素和wortmannin(G 蛋白和 PI3K 的抑制剂)抑制了 H4 诱导的过氧化氢产生和脱颗粒。这些研究表明,在感染或炎症部位释放组蛋白 H4 可能增强中性粒细胞的激活,并促进额外的炎症反应。这些研究可能为开发新型治疗策略提供更好的基础,以阻断中性粒细胞胞外陷阱(NET)和败血症及各种形式的肺部损伤(包括流感或 SARS-CoV2 引起的损伤)中的 H4 相关病理。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/bf78/7461478/d89018745436/JLB-109-763-g003.jpg

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