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Innate signals overcome acquired TCR signaling pathway regulation and govern the fate of human CD161hi CD8α+ semi-invariant T cells

机译:先天信号克服了获得性TCR信号通路的调控并控制着人类CD161hiCD8α+半恒定T细胞的命运

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摘要

Type 17 programmed CD161hiCD8α+ T cells contribute to mucosal immunity to bacteria and yeast. In early life, microbial colonization induces proliferation of CD161hi cells that is dependent on their expression of a semi-invariant Vα7.2+ TCR. Although prevalent in adults, CD161hiCD8α+ cells exhibit weak proliferative and cytokine responses to TCR ligation. The mechanisms responsible for the dichotomous response of neonatal and adult CD161hi cells, and the signals that enable their effector function, have not been established. We describe acquired regulation of TCR signaling in adult memory CD161hiCD8α+ T cells that is absent in cord CD161hi cells and adult CD161lo cells. Regulated TCR signaling in CD161hi cells was due to profound alterations in TCR signaling pathway gene expression and could be overcome by costimulation through CD28 or innate cytokine receptors, which dictated the fate of their progeny. Costimulation with IL-1β during TCR ligation markedly increased proinflammatory IL-17 production, while IL-12–induced Tc1-like function and restored the response to TCR ligation without costimulation. CD161hi cells from umbilical cord blood and granulocyte colony stimulating factor-mobilized leukaphereses differed in frequency and function, suggesting future evaluation of the contribution of CD161hi cells in hematopoietic stem cell grafts to transplant outcomes is warranted.
机译:17型编程的CD161 hi CD8α + T细胞有助于粘膜对细菌和酵母菌的免疫。在早期生命中,微生物定植会诱导CD161 hi 细胞增殖,这取决于它们的半恒定Vα7.2 + TCR的表达。尽管在成年人中很普遍,但CD161 hi CD8α + 细胞对TCR连接的增殖和细胞因子反应较弱。尚未建立负责新生儿和成年CD161 hi 细胞二分反应的机制,以及使它们发挥效应功能的信号。我们描述了成年记忆CD161 hi CD8α + T细胞中TCR信号的获得性调节,而脐带CD161 hi 细胞和成年CD161 lo 个单元格。 CD161 hi 细胞中TCR信号的调节是由于TCR信号通路基因表达的深刻改变,可以通过CD28或先天性细胞因子受体的共同刺激来克服,这决定了它们的后代命运。在TCR结扎过程中与IL-1β的共刺激显着增加促炎性IL-17的产生,而IL-12诱导的Tc1样功能并恢复了对TCR结扎的响应,而无需共刺激。脐血和粒细胞集落刺激因子激活的白血球细胞CD161 hi 细胞的频率和功能有所不同,这提示了对CD161 hi 细胞在造血干细胞移植物中的贡献的未来评估移植结果是必要的。

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