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Context-dependent regulation of Th17-associated genes and IFN gamma expression by the transcription factor NFAT5

机译:通过转录因子NFAT5依赖于Th17相关基因和IFNγ表达的依赖性调节

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Stress-activated transcription factors influence T-cell function in different physiopathologic contexts. NFAT5, a relative of nuclear factor kappa B and the calcineurin-activated NFATc transcription factors, protects mammalian cells from hyperosmotic stress caused by the elevation of extracellular sodium levels. In T cells exposed to hypernatremia, NFAT5 not only induces osmoprotective gene products but also cytokines and immune receptors, which raises the question of whether this factor could regulate other T-cell functions in osmostress-independent contexts. Here we have used mice with a conditional deletion of Nfat5 in mature T lymphocytes to explore osmostress-dependent and-independent functions of this factor. In vitro experiments with CD4 T cells stimulated in hyperosmotic medium showed that NFAT5 enhanced the expression of IL-2 and the Th17-associated gene products ROR gamma t and IL-23R. By contrast, NFAT5-deficient CD4 T cells activated in vivo by anti-CD3 antibody exhibited a different activation profile and were skewed towards enhanced interferon gamma (IFN gamma) and IL-17 expression and attenuated Treg responses. Using a model of experimental colitis, we observed that mice lacking NFAT5 in T cells exhibited exacerbated intestinal colitis and enhanced expression of IFN gamma in draining lymph nodes and colon. These results show that NFAT5 can modulate different T-cell responses depending on stress conditions and stimulatory context.
机译:应激激活的转录因子影响不同的物理病理学背景下的T细胞功能。 NFAT5,核因子Kappa B和钙突引起的NFATC转录因子的相对,保护哺乳动物细胞免受细胞外钠水平升高引起的高血白胁迫。在暴露于高鼻血症的T细胞中,NFAT5不仅诱导OsMophotective基因产物,还诱导细胞因子和免疫受体,这提出了该因素是否可以在奥斯莫斯特塞 - 无关的上下文中调节其他T细胞功能的问题。在这里,我们使用小鼠在成熟的T淋巴细胞中有条件缺失的NFAT5,以探索该因素的Osmostress依赖性和独立功能。体外实验与高染色培养基刺激的CD4 T细胞的实验表明,NFAT5增强了IL-2和TH17-相关基因产物RORγT和IL-23R的表达。相比之下,通过抗CD3抗体在体内激活的NFAT5缺陷CD4 T细胞表现出不同的活化曲线,并倾斜朝向增强的干扰素γ(IFNγ)和IL-17表达和减毒的Treg响应。使用实验性结肠炎模型,我们观察到缺乏NFAT5在T细胞中的小鼠表现出加剧的肠道性结肠炎,并在排出淋巴结和结肠中增强IFNγ的表达。这些结果表明,根据应力条件和刺激性背景,NFAT5可以调节不同的T细胞应答。

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