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首页> 外文期刊>Immunology: An Official Journal of the British Society for Immunology >Inhibition of interleukin-1 beta-mediated interleukin-1 receptor-associated kinase 4 phosphorylation by zinc leads to repression of memory T helper type 17 response in humans
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Inhibition of interleukin-1 beta-mediated interleukin-1 receptor-associated kinase 4 phosphorylation by zinc leads to repression of memory T helper type 17 response in humans

机译:锌抑制白介素1β介导的白介素1受体相关的激酶4磷酸化导致抑制人类记忆T辅助17型反应。

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摘要

Zinc is an essential trace element that plays pivotal roles in multiple facets of the immune system. Besides its catalytic and structural roles, zinc also functions as an intracellular signalling molecule, and changes in zinc levels can cause both direct and indirect modulation of immune responses. Further, cytoplasmic levels of bioavailable zinc in immune cells are largely influenced by many extracellular stimuli. Here we provide evidence that zinc represses memory T helper type 17 responses in humans by inhibiting interleukin-1 beta (IL-1 beta)-mediated signal. In vitro zinc treatment of CD4(+) T cells in the presence of activated monocytes inhibited interferon-gamma-producing cells and IL-17-producing cells, but not IL-4-producing cells. Of note, production of IL-17(+) cells from memory CD4(+) T cells, which is significantly up-regulated by lipopolysaccharide-stimulated monocytes, was preferentially repressed by zinc. Increased cytoplasmic zinc in T cells suppressed IL-1 beta signalling through repression of phosphorylation of IL-1 receptor-associated kinase 4 (IRAK4), so leading to an inhibitory effect on T helper type 17 responses facilitated by monocyte- derived IL-1 beta in humans. These findings suggest that extracellular zinc bioavailability may affect memory CD4(+) T-cell responses by modulating the zinc-mediated signalling pathway.
机译:锌是必需的微量元素,在免疫系统的多个方面起着关键作用。锌除了起催化和结构作用外,还起细胞内信号分子的作用,锌水平的变化可引起免疫反应的直接和间接调节。此外,免疫细胞中锌的胞浆水平在很大程度上受许多细胞外刺激的影响。在这里,我们提供了锌通过抑制白介素1β(IL-1β)介导的信号来抑制人类记忆T辅助型17反应的证据。 CD4(+)T细胞在活化单核细胞存在下的体外锌处理抑制了产生干扰素γ的细胞和产生IL-17的细胞,但没有抑制产生IL-4的细胞。值得注意的是,由记忆性CD4(+)T细胞产生的IL-17(+)细胞明显受到锌的抑制,该细胞明显受脂多糖刺激的单核细胞上调。 T细胞中细胞质锌的增加通过抑制IL-1受体相关激酶4(IRAK4)的磷酸化而抑制了IL-1 beta信号传导,因此导致对单核细胞衍生的IL-1 beta促进的T辅助型17型应答的抑制作用在人类中。这些发现表明,细胞外锌的生物利用度可能通过调节锌介导的信号通路而影响记忆CD4(+)T细胞应答。

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