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首页> 外文期刊>The Journal of Immunology: Official Journal of the American Association of Immunologists >Myeloid Cell-Intrinsic IRF5 Promotes T Cell Responses through Multiple Distinct Checkpoints In Vivo, and IRF5 Immune-Mediated Disease Risk Variants Modulate These Myeloid Cell Functions
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Myeloid Cell-Intrinsic IRF5 Promotes T Cell Responses through Multiple Distinct Checkpoints In Vivo, and IRF5 Immune-Mediated Disease Risk Variants Modulate These Myeloid Cell Functions

机译:骨髓细胞内在IRF5通过体内多种不同检查点促进T细胞应答,IRF5免疫介导的疾病风险变体调节这些骨髓细胞功能

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Common IRF5 genetic risk variants associated with multiple immune-mediated diseases are a major determinant of interindividual variability in pattern-recognition receptor (PRR)-induced cytokines in myeloid cells. However, how myeloid cell-intrinsic IRF5 regulates the multiple distinct checkpoints mediating T cell outcomes in vivo and IRF5-dependent mechanisms contributing to these distinct checkpoints are not well defined. Using an in vivo Ag-specific adoptive T cell transfer approach into Irf5(-/-) mice, we found that T cell-extrinsic IRF5 regulated T cell outcomes at multiple critical checkpoints, including chemokine-mediated T cell trafficking into lymph nodes and PDK1-dependent soluble Ag uptake, costimulatory molecule upregulation, and secretion of Thl (IL-12)- and Th17 (IL-23, IL-1 beta, and IL-6)-conditioning cytokines by myeloid cells, which then cross-regulated Th2 and regulatory T cells. IRF5 was required for PRR-induced MAPK and NF-kappa B activation, which, in turn, regulated these key outcomes in myeloid cells. Importantly, mice with IRF5 deleted from myeloid cells demonstrated T cell outcomes similar to those observed in Irf5(-/-) mice. Complementation of IL-12 and IL-23 was able to restore T cell differentiation both in vitro and in vivo in the context of myeloid cell-deficient IRF5. Finally, human monocyte-derived dendritic cells from IRF5 disease-associated genetic risk carriers leading to increased IRF5 expression demonstrated increased Ag uptake and increased PRR-induced costimulatory molecule expression and chemokine and cytokine secretion compared with monocyte-derived dendritic cells from low-expressing IRF5 genetic variant carriers. These data establish that myeloid cell-intrinsic IRF5 regulates multiple distinct checkpoints in T cell activation and differentiation and that these are modulated by IRF5 disease risk variants.
机译:与多种免疫介导的疾病相关的常见IRF5遗传风险变体是模式识别受体(PRR)诱导的骨髓细胞中细胞因子的间接变异性的主要决定因素。然而,骨髓细胞内在IRF5如何调节介导的多种不同的检查点中介导体内的T细胞结果,并且IRF5依赖性机制有助于这些明显的检查点的定义。使用体内AG特异性的采用T细胞转移方法进入IRF5( - / - )小鼠,我们发现T细胞外部IRF5在多重关键检查点处调节T细胞结果,包括趋化因子介导的T细胞贩运淋巴结和PDK1 - 髓样细胞的依赖性可溶性Ag吸收,共刺激分子上调和Th1(IL-12) - 和Th17(IL-23,IL-1β和IL-6)的分泌细胞因子,然后进行跨调节TH2和调节性T细胞。 PRR诱导的MAPK和NF-Kappa B激活需要IRF5,反过来,这反过来调节骨髓细胞中的这些关键结果。重要的是,从骨髓细胞中删除的IRF5小鼠证明了与IRF5( - / - )小鼠观察到的那些类似的T细胞结果。 IL-12和IL-23的互补能够在骨髓细胞缺陷IRF5的背景下在体外和体内恢复T细胞分化。最后,来自IRF5疾病相关的遗传风险携带者的人单核细胞衍生的树突状细胞导致IRF5表达增加,表现出增加的AG吸收和增加的PRR诱导的共刺激分子表达和趋化因子和细胞因子分泌,与来自低表达IRF5的单核细胞衍生的树突细胞相比遗传变异载体。这些数据确定骨髓细胞内在IRF5调节T细胞活化和分化中的多种不同的检查点,并且这些疾病风险变体调节。

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