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BATF2 prevents T-cell-mediated intestinal inflammation through regulation of the IL-23/IL-17 pathway

机译:BATF2通过调节IL-23 / IL-17途径防止T细胞介导的肠道炎症

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摘要

Inappropriate activation of the IL-23 signaling pathway causes chronic inflammation through the induction of immunopathological Th17 cells in several tissues including the intestine, whereas adequate Th17 responses are essential for host defense against harmful organisms. In the intestinal lamina propria, IL-23 is primarily produced by innate myeloid cells including dendritic cells (DCs) and macrophages (Mϕs). However, the molecular mechanisms underlying the regulation of IL-23 production by these cells remains poorly understood. In this study, we demonstrated that BATF2 regulates intestinal homeostasis by inhibiting IL-23-driven T-cell responses. Batf2 was highly expressed in intestinal innate myeloid subsets, such as monocytes, CD11b+ CD64+ Mϕs and CD103+ DCs. Batf2−/− mice spontaneously developed colitis and ileitis with altered microbiota composition. In this context, IL-23, but not TNF-α and IL-10, was produced in high quantities by intestinal CD11b+ CD64+ Mϕs from Batf2−/− mice compared with wild-type mice. Moreover, increased numbers of IFN-γ+, IL-17+ and IFN-γ+ IL-17+ CD4+ T cells, but not IL-10+ CD4+ T cells, accumulated in the colons and small intestines of Batf2−/− mice. In addition, RORγt-expressing innate lymphoid cells were increased in Batf2−/− mice. Batf2−/−Rag2−/− mice showed a reduction in intestinal inflammation present in Batf2−/− mice. Furthermore, the high numbers of intestinal IL-17+ and IFN-γ+ IL-17+ CD4+ T cells were markedly reduced in Batf2−/− mice when introducing Il23a deficiency, which was associated with the abrogation of intestinal inflammation. These results indicated that BATF2 in innate myeloid cells is a key molecule for the suppression of IL-23/IL-17 pathway-mediated adaptive intestinal pathology.
机译:IL-23信号通路的不适当激活会通过诱导包括肠道在内的多种组织中的免疫病理性Th17细胞引起慢性炎症,而足够的Th17反应对于宿主防御有害生物至关重要。在肠道固有层中,IL-23主要由先天性髓样细胞产生,包括树突状细胞(DCs)和巨噬细胞(Mϕs)。然而,对这些细胞调节IL-23产生的分子机制仍知之甚少。在这项研究中,我们证明了BATF2通过抑制IL-23驱动的T细胞反应来调节肠道稳态。 Batf2在单核细胞,CD11b + CD64 + Mϕs和CD103 + DC等肠道先天骨髓亚群中高度表达。 Batf2 -/-小鼠自发发展为结肠炎和回肠炎,微生物群组成发生变化。在这种情况下,来自Batf2 -的肠道CD11b + CD64 + Mϕs大量产生了IL-23,而不产生TNF-α和IL-10。 /-小鼠与野生型小鼠相比。而且,IFN-γ + ,IL-17 + 和IFN-γ + IL-17 + CD4 + T细胞,而不是IL-10 + CD4 + T细胞,它们聚集在Batf2 的结肠和小肠中-/-小鼠。另外,在Batf2 -/-小鼠中,表达RORγt的先天淋巴样细胞增加。 Batf2 -/- Rag2 -/-小鼠显示出Batf2 -/-小鼠中肠道炎症的减轻。此外,肠道IL-17 + 和IFN-γ + IL-17 + CD4 + 的数量很高引入Il23a缺乏症后,Batf2 -/-小鼠的T细胞明显减少,这与肠道炎症的消除有关。这些结果表明,先天骨髓细胞中的BATF2是抑制IL-23 / IL-17途径介导的适应性肠道病理的关键分子。

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