Immunomodulatory effects of Eimeria maxima surface antigen (EmSAG) as an IFN-γ inhibitory molecule on peripheral blood mononuclear cells (PBMCs) and T cell subsets in chickens.

IF 3.7 1区 农林科学 Q1 VETERINARY SCIENCES
Xianglin Pu, Yiyuan Zhang, Xinmei Huang, Mingmin Lu, Lixin Xu, Ruofeng Yan, Xiangrui Li, Xiaokai Song
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Abstract

Eimeria maxima (E. maxima) infection inhibits the expression of IFN-γ, a cytokine that is essential for the Th1 immune response and plays a key role in combating this parasite. In our preliminary investigations, we identified the E. maxima surface antigen (EmSAG) as an inhibitory molecule of IFN-γ. EmSAG was screened and characterised from an E. maxima sporozoite cDNA expression library. The present study aimed to evaluate the immunomodulatory effects of EmSAG on chicken peripheral blood mononuclear cells (PBMCs) and various T cell subsets. We analysed cell proliferation, nitric oxide (NO) release, and cytokine transcription. The results revealed that EmSAG boosts PBMC proliferation and promotes differentiation of CD4+/CD8+ T cells. Additionally, stimulation with EmSAG significantly inhibited NO release and IFN-γ transcription while enhancing the transcription of IL-4, IL-10, and TGF-β1 in chicken PBMCs. The sorting purity of T cell subsets was as follows: CD8+ (96.90%), CD4+ (86.25%), CD4+CD25- (89.14%), and CD4+CD25+ regulatory T cells (Tregs; 92.16%). These purified subsets were co-incubated with EmSAG to analyse the transcription of hallmark cytokines associated with Th1, Th2, and Treg responses. EmSAG significantly inhibited the transcription of IFN-γ and IL-2 in both CD4+ and CD8+ T cells, while promoting the expression of IL-10, TGF-β1, and CTLA-4 in Tregs. Moreover, depletion of CD25+ cells reversed the EmSAG-induced suppression of IL-2 transcription and reduced its stimulating effects on IL-4 and IL-10 transcription in CD4+CD25- T cells. These findings highlight the role of EmSAG as an inhibitor of IFN-γ, facilitating immune evasion by attenuating the Th1 immune response and modulating Treg cell function. This study provides critical insights into the immune evasion mechanisms utilised by chicken coccidia.

最大艾美耳球虫表面抗原(EmSAG)作为IFN-γ抑制分子对鸡外周血单个核细胞(PBMCs)和T细胞亚群的免疫调节作用
最大艾美耳球虫(E. maxima)感染抑制IFN-γ的表达,IFN-γ是Th1免疫应答所必需的细胞因子,在对抗这种寄生虫中起关键作用。在我们的初步研究中,我们确定了E. maxima表面抗原(EmSAG)是IFN-γ的抑制分子。对EmSAG进行了筛选,并从一个大孢子子cDNA表达文库中进行了表征。本研究旨在探讨EmSAG对鸡外周血单个核细胞(PBMCs)和多种T细胞亚群的免疫调节作用。我们分析了细胞增殖、一氧化氮(NO)释放和细胞因子转录。结果表明,EmSAG可促进PBMC增殖,促进CD4+/CD8+ T细胞分化。此外,EmSAG刺激可显著抑制鸡PBMCs中NO的释放和IFN-γ的转录,同时增强IL-4、IL-10和TGF-β1的转录。T细胞亚群的分选纯度分别为:CD8+(96.90%)、CD4+(86.25%)、CD4+CD25-(89.14%)、CD4+CD25+调节性T细胞(Tregs;92.16%)。这些纯化的亚群与EmSAG共孵育,分析与Th1、Th2和Treg反应相关的标志细胞因子的转录。EmSAG显著抑制CD4+和CD8+ T细胞中IFN-γ和IL-2的转录,同时促进Tregs中IL-10、TGF-β1和CTLA-4的表达。此外,CD25+细胞的缺失逆转了emsag诱导的IL-2转录抑制,并降低了其对CD4+CD25- T细胞中IL-4和IL-10转录的刺激作用。这些发现强调了EmSAG作为IFN-γ抑制剂的作用,通过减弱Th1免疫反应和调节Treg细胞功能促进免疫逃避。这项研究为鸡球虫利用的免疫逃避机制提供了重要的见解。
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来源期刊
Veterinary Research
Veterinary Research 农林科学-兽医学
CiteScore
7.00
自引率
4.50%
发文量
92
审稿时长
3 months
期刊介绍: Veterinary Research is an open access journal that publishes high quality and novel research and review articles focusing on all aspects of infectious diseases and host-pathogen interaction in animals.
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