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C5a anaphylatoxin is a major regulator of activating versus inhibitory FcγRs in immune complex–induced lung disease

机译:C5a过敏毒素是免疫复合物诱发的肺部疾病中激活与抑制性FcγRs的主要调节剂

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摘要

IgG Fc receptors (FcγRs, especially FcγRIII) and complement (in particular, C5a anaphylatoxin) are critical effectors of the acute inflammatory response to immune complexes (ICs). However, it is unknown whether and how these two key components can interact with each other in vivo. We use here a mouse model of the acute pulmonary IC hypersensitivity reaction to analyze their potential interaction. FcγRIII and C5aR are coexpressed on alveolar macrophages (AMs), and both FcγRIII and C5aR mutant mice display impaired immune responses. We find that recombinant human C5a (rhC5a) can control inverse expression of various FcγRs, and costimulation of ICs with rhC5a results in strong enhancement of FcγRIII-triggered cellular activation in vitro and in vivo. Moreover, we show here that early IC-induced bioactive C5a, and its interaction with C5aR, causes induction of activating FcγRIII and suppression of inhibitory FcγRII on AMs that appears crucial for efficient cytokine production and neutrophil recruitment in lung pathology. Therefore, C5a, which is a potent chemoattractant, has a broader critical function in regulating the inhibitory/activating FcγRII/III receptor pair to connect complement and FcγR effector pathways in immune inflammation.
机译:IgG Fc受体(FcγR,尤其是FcγRIII)和补体(尤其是C5a过敏毒素)是对免疫复合物(ICs)急性炎症反应的关键效应物。然而,尚不清楚这两个关键成分在体内是否以及如何相互作用。我们在这里使用急性肺IC过敏反应的小鼠模型来分析其潜在的相互作用。 FcγRIII和C5aR在肺泡巨噬细胞(AM)上共表达,并且FcγRIII和C5aR突变小鼠均显示出受损的免疫反应。我们发现重组人C5a(rhC5a)可以控制各种FcγR的反向表达,并且与rhC5a共同刺激ICs可以在体外和体内强烈增强FcγRIII触发的细胞活化。此外,我们在这里表明,早期的IC诱导的生物活性C5a及其与C5aR的相互作用导致诱导AM上的活化FcγRIII和抑制性FcγRII的表达,这对于有效的细胞因子产生和肺病理中的中性粒细胞募集显得至关重要。因此,C5a是有效的化学引诱剂,在调节抑制/激活FcγRII/ III受体对以连接免疫炎症中的补体和FcγR效应子途径方面具有更广泛的关键功能。

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