Macrophage expression of P2X7 controls autoimmune uveitis.

IF 10.1 1区 医学 Q1 IMMUNOLOGY
Paul-Alexandre Déchelle-Marquet, Yueshen Che, Camille Roux, Frédéric Blond, Kaitryn E Ronning, Sébastien Augustin, Pauline Lagouge-Roussey, Caroline Nous, Sara Touhami, Bahram Bodaghi, Jean Kanellopoulos, Sahil Adriouch, Xavier Guillonneau, Florian Sennlaub, Cécile Delarasse
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引用次数: 0

Abstract

The release of danger-associated molecular patterns (DAMPs) such as ATP from stressed or damaged cells is a key initiator of sterile inflammation. In autoimmune diseases, extracellular ATP acts as a potent pro-inflammatory signal by activating the purinergic receptor P2X7, which is expressed on both mononuclear phagocytes (MPs) and T cells-key drivers of pathological processes. While it is well established that P2X7 mediates ATP-dependent immune activation, its cell-specific contributions to innate versus adaptive immunity in autoimmune conditions remain unclear, especially in autoimmune uveitis. Here we used the experimental autoimmune uveoretinitis (EAU) mouse model to delineate the cellular mechanisms underlying P2X7's role in autoimmune responses. Using a combination of multiple cell-specific conditional models and transcriptomic approaches, we showed a pivotal role forP2X7 expressed by MPs in orchestrating T-cell mediated autoimmune responses. P2X7 deficiency in MPs decreased disease severity. Additionally, cell-specific transcriptomic analyses, including single-cell analyses, revealed that P2X7 exerted distinct modulatory effects across monocyte-derived macrophages (MdM) versus microglia. In MdM, lack of P2X7 was associated with reduced expression of genes related to the inflammasome, phagocytosis pathways, and components of the complement system, leading to a marked decrease in pathogenic Th17 cell frequency in the retina. In microglia, P2X7 deficiency instead particularly impacted an IFN-responsive microglial subset that is normally characteristic of EAU. By specifically deleting P2X7 in microglia, we demonstrate its role in driving pathogenic processes in this cell population. These findings suggest that inhibition of P2X7 could be a promising therapeutic strategy in autoimmune neuroinflammatory disorders.

巨噬细胞表达P2X7控制自身免疫性葡萄膜炎。
应激或受损细胞释放危险相关分子模式(DAMPs),如ATP,是无菌性炎症的关键发起者。在自身免疫性疾病中,细胞外ATP通过激活嘌呤能受体P2X7作为一种有效的促炎信号,嘌呤能受体P2X7在单核吞噬细胞(MPs)和T细胞上表达,这是病理过程的关键驱动因素。虽然P2X7介导atp依赖的免疫激活已被证实,但其在自身免疫性疾病中对先天免疫和适应性免疫的细胞特异性贡献仍不清楚,特别是在自身免疫性葡萄膜炎中。在这里,我们使用实验性自身免疫性葡萄膜视网膜炎(EAU)小鼠模型来描述P2X7在自身免疫反应中作用的细胞机制。通过结合多种细胞特异性条件模型和转录组学方法,我们发现MPs表达的p2x7在协调t细胞介导的自身免疫反应中发挥了关键作用。MPs中P2X7的缺乏降低了疾病的严重程度。此外,细胞特异性转录组学分析,包括单细胞分析,显示P2X7在单核细胞来源的巨噬细胞(MdM)和小胶质细胞之间具有不同的调节作用。在MdM中,P2X7的缺乏与炎症小体、吞噬途径和补体系统成分相关基因的表达减少有关,导致视网膜中致病性Th17细胞频率显著降低。在小胶质细胞中,P2X7缺陷反而特别影响ifn反应性小胶质亚群,这通常是EAU的特征。通过特异性地删除小胶质细胞中的P2X7,我们证明了它在驱动该细胞群的致病过程中的作用。这些发现表明,抑制P2X7可能是一种有前途的治疗自身免疫性神经炎症疾病的策略。
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来源期刊
Journal of Neuroinflammation
Journal of Neuroinflammation 医学-神经科学
CiteScore
15.90
自引率
3.20%
发文量
276
审稿时长
1 months
期刊介绍: The Journal of Neuroinflammation is a peer-reviewed, open access publication that emphasizes the interaction between the immune system, particularly the innate immune system, and the nervous system. It covers various aspects, including the involvement of CNS immune mediators like microglia and astrocytes, the cytokines and chemokines they produce, and the influence of peripheral neuro-immune interactions, T cells, monocytes, complement proteins, acute phase proteins, oxidative injury, and related molecular processes. Neuroinflammation is a rapidly expanding field that has significantly enhanced our knowledge of chronic neurological diseases. It attracts researchers from diverse disciplines such as pathology, biochemistry, molecular biology, genetics, clinical medicine, and epidemiology. Substantial contributions to this field have been made through studies involving populations, patients, postmortem tissues, animal models, and in vitro systems. The Journal of Neuroinflammation consolidates research that centers around common pathogenic processes. It serves as a platform for integrative reviews and commentaries in this field.
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