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处于未来发展为类风湿关节炎风险中的受试者,其 CD14 单核细胞中组蛋白 H3 瓜氨酸化和促炎细胞因子的产生表现出 PAD4 和 TLR 依赖性增强。

Subjects at-risk for future development of rheumatoid arthritis demonstrate a PAD4-and TLR-dependent enhanced histone H3 citrullination and proinflammatory cytokine production in CD14 monocytes.

机构信息

University of Colorado Denver, Division of Rheumatology, Aurora, CO, USA; Tokyo Women's Medical University School of Medicine, Department of Rheumatology, Tokyo, Japan.

Colorado School of Public Health, Department of Biostatistics and Informatics, Aurora, CO, USA.

出版信息

J Autoimmun. 2021 Feb;117:102581. doi: 10.1016/j.jaut.2020.102581. Epub 2020 Dec 9.

Abstract

The presence of anti-citrullinated protein/peptide antibodies (ACPA) and epitope spreading across the target autoantigens is a unique feature of rheumatoid arthritis (RA). ACPA are present in the peripheral blood for several years prior to the onset of arthritis and clinical classification of RA. ACPA recognize multiple citrullinated proteins, including histone H3 (H3). Intracellular citrullination of H3 in neutrophils and T cells is known to regulate immune cell function by promoting neutrophil extracellular trap formation and citrullinated autoantigen release as well as regulating the Th2/Th17 T cell phenotypic balance. However, the roles of H3 citrullination in other immune cells are not fully elucidated. We aimed to explore H3 citrullination and cytokine/metabolomic signatures in peripheral blood immune cells from subjects prior to and after the onset of RA, at baseline and in response to ex vivo toll-like receptor (TLR) stimulation. Here, we analyzed 13 ACPA (+) subjects without arthritis but at-risk for future development of RA, 14 early RA patients, and 13 healthy controls. We found significantly elevated H3 citrullination in CD14 monocytes, as well as CD1c dendritic cells and CD66 granulocytes. Unsupervised analysis identified two distinct subsets in CD14 monocytes characterized by H3 modification and unique cytokine/metabolomic signatures. CD14 monocytes with elevated TLR-stimulated H3 citrullination were significantly increased in ACPA (+) at-risk subjects. These cells were skewed to produce TNFα, MIP1β, IFNα, and partially IL-12. Additionally, they demonstrate peptidyl arginine deiminase 4 (PAD4) mediated upregulation of the glycolytic enzyme PFKFB3. These CD14 monocytes with elevated H3 citrullination morphologically formed monocyte extracellular traps (METs). Taken together, dysregulated PAD4-driven cytokine production as well as MET formation in CD14 monocytes in ACPA (+) at-risk subjects likely plays an important role in the development of RA via promoting and perpetuating inflammation and generation of citrullinated autoantigens.

摘要

抗瓜氨酸化蛋白/肽抗体 (ACPA) 的存在和针对靶自身抗原的表位扩展是类风湿关节炎 (RA) 的独特特征。在关节炎发作和 RA 的临床分类之前,ACPA 已经存在于外周血中数年。ACPA 识别多种瓜氨酸化蛋白,包括组蛋白 H3 (H3)。已知中性粒细胞和 T 细胞中的细胞内 H3 瓜氨酸化通过促进中性粒细胞胞外诱捕形成和瓜氨酸化自身抗原释放以及调节 Th2/Th17 T 细胞表型平衡来调节免疫细胞功能。然而,H3 瓜氨酸化在其他免疫细胞中的作用尚未完全阐明。我们旨在探索 RA 发病前和发病后的受试者外周血免疫细胞中的 H3 瓜氨酸化和细胞因子/代谢组学特征,在基线和体外 Toll 样受体 (TLR) 刺激时。在这里,我们分析了 13 名无关节炎但有未来发生 RA 风险的 ACPA(+)受试者、14 名早期 RA 患者和 13 名健康对照者。我们发现 CD14 单核细胞中的 H3 瓜氨酸化显著升高,CD1c 树突状细胞和 CD66 粒细胞也是如此。无监督分析在 CD14 单核细胞中确定了两个具有独特 H3 修饰和细胞因子/代谢组学特征的不同亚群。在 ACPA(+)高危受试者中,TLR 刺激后 H3 瓜氨酸化升高的 CD14 单核细胞显著增加。这些细胞偏向产生 TNFα、MIP1β、IFNα 和部分 IL-12。此外,它们表现出肽基精氨酸脱亚氨酶 4 (PAD4) 介导的糖酵解酶 PFKFB3 的上调。这些 H3 瓜氨酸化升高的 CD14 单核细胞在形态上形成单核细胞细胞外诱捕物 (METs)。总之,ACPA(+)高危受试者中 CD14 单核细胞中失调的 PAD4 驱动的细胞因子产生以及 MET 形成可能通过促进和持续炎症以及产生瓜氨酸化自身抗原在 RA 的发展中发挥重要作用。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/adc9/7855988/573f0b8fbbd9/nihms-1653952-f0001.jpg

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