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Signal Strength and Metabolic Requirements Control Cytokine-Induced Th17 Differentiation of Uncommitted Human T Cells

机译:信号强度和代谢要求控制细胞因子诱导的非承诺人T细胞的Th17分化

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IL-17 production defines Th17 cells, which orchestrate immune responses and autoimmune diseases. Human Th17 cells can be efficiently generated with appropriate cytokines from precommitted precursors, but the requirements of uncommitted T cells are still ill defined. In standard human Th17 cultures, IL-17 production was restricted to CCR6+CD45RA+ T cells, which expressed CD95 and produced IL-17 ex vivo, identifying them as Th17 memory stem cells. Uncommitted naive CD4+ T cells upregulated CCR6, RORC2, and IL-23R expression with Th17-promoting cytokines but in addition required sustained TCR stimulation, late mammalian target of rapamycin (mTOR) activity, and HIF-1α to produce IL-17. However, in standard high-density cultures, nutrients like glucose and amino acids became progressively limiting, and mTOR activity was consequently not sustained, despite ongoing TCR stimulation and T cell proliferation. Sustained, nutrient-dependent mTOR activity also induced spontaneous IL-22 and IFN-γ production, but these cytokines had also unique metabolic requirements. Thus, glucose promoted IL-12–independent Th1 differentiation, whereas aromatic amino acid–derived AHR ligands were selectively required for IL-22 production. The identification of Th17 memory stem cells and the stimulation requirements for induced human Th17/22 differentiation have important implications for T cell biology and for therapies targeting the mTOR pathway.
机译:IL-17的产生定义了Th17细胞,该细胞协调免疫应答和自身免疫性疾病。可以使用适当的细胞因子从预先承诺的前体中高效生成人Th17细胞,但对于尚未承诺的T细胞的要求仍然不确定。在标准的人类Th17培养物中,IL-17的产生仅限于CCR6 + CD45RA + T细胞,后者表达CD95并离体产生IL-17,从而将它们识别为Th17记忆干细胞。未定型的幼稚CD4 + T细胞通过Th17促进细胞因子上调CCR6,RORC2和IL-23R的表达,但另外还需要持续的TCR刺激,哺乳动物雷帕霉素(mTOR)活性的晚期靶标和HIF-1α来产生IL-17。但是,在标准的高密度培养物中,尽管正在进行TCR刺激和T细胞增殖,但葡萄糖和氨基酸等营养物质逐渐受到限制,因此mTOR活性无法持续。持续的,依赖于营养物的mTOR活性也诱导自发的IL-22和IFN-γ产生,但是这些细胞因子也具有独特的代谢要求。因此,葡萄糖促进了IL-12依赖性的Th1分化,而IL-22的生产则选择性地需要芳香族氨基酸衍生的AHR配体。 Th17记忆干细胞的鉴定和诱导的人类Th17 / 22分化的刺激要求对T细胞生物学和靶向mTOR途径的疗法具有重要意义。

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