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首页> 外文期刊>International immunology. >CD25+CD4+ T cells compete with naive CD4+ T cells for IL-2 and exploit it for the induction of IL-10 production.
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CD25+CD4+ T cells compete with naive CD4+ T cells for IL-2 and exploit it for the induction of IL-10 production.

机译:CD25 + CD4 + T细胞与天然CD4 + T细胞竞争IL-2,并将其用于诱导IL-10的产生。

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摘要

Maintenance of homeostasis in the immune system involves competition for resources between T lymphocytes, which avoids the development of immune pathology seen in lymphopenic mice. CD25(+)CD4(+) T cells are important for homeostasis, but there is as yet no consensus on their mechanisms of action. Although CD25(+)CD4(+) T cells cause substantial down-regulation of IL-2 mRNA in responder T cells in an in vitro co-culture system, the presence of IL- protein can be demonstrated by intracellular staining. As a consequence of competition for IL-2, CD25(+)CD4(+) T cells further up-regulate the IL-2R alpha chain (CD25), a process that is strictly dependent on IL-2, whereas responder T cells fail to up-regulate CD25. Similarly, adoptive transfer into lymphopenic mice showed that CD25(+)CD4(+) T cells interfere with CD25 up-regulation on co-transferred naive T cells, while increasing their own CD25 levels. IL-2 sequestration by CD25(+)CD4(+) T cells is not a passive phenomenon but instead initiates-in conjunction with signals through the TCR-their differentiation to IL-10 production. Although IL-10 is not required for in vitro suppression, it is vital for the in vivo function of regulatory T cells. Our data provide a link explaining the apparent difference in regulatory mechanisms in vitro and in vivo.
机译:维持免疫系统中的动态平衡需要争夺T淋巴细胞之间的资源,从而避免了在淋巴细胞减少症小鼠中出现的免疫病理学发展。 CD25(+)CD4(+)T细胞对于体内平衡非常重要,但目前尚无关于其作用机制的共识。尽管CD25(+)CD4(+)T细胞在体外共培养系统中引起应答性T细胞中IL-2 mRNA的大量下调,但IL-蛋白的存在可以通过细胞内染色来证明。由于竞争IL-2,CD25(+)CD4(+)T细胞进一步上调了IL-2Rα链(CD25),该过程严格依赖于IL-2,而应答性T细胞则失败上调CD25。同样,过继转移到淋巴细胞减少症小鼠中显示,CD25(+)CD4(+)T细胞干扰了共转移天然T细胞上CD25的上调,同时增加了它们自身的CD25水平。 CD25(+)CD4(+)T细胞的IL-2隔离不是一种被动现象,而是与通过TCR传递的信号一起启动,从而分化为IL-10。尽管在体外抑制中不需要IL-10,但它对调节性T细胞的体内功能至关重要。我们的数据提供了一个链接,可以解释体外和体内调节机制的明显差异。

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