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首页> 外文期刊>The Journal of Immunology: Official Journal of the American Association of Immunologists >The human IL-17F/IL-17A heterodimeric cytokine signals through the IL-17RA/IL-17RC receptor complex.
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The human IL-17F/IL-17A heterodimeric cytokine signals through the IL-17RA/IL-17RC receptor complex.

机译:人IL-17F / IL-17A异二聚体细胞因子通过IL-17RA / IL-17RC受体复合物发出信号。

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摘要

IL-17A and IL-17F, produced by the Th17 CD4(+) T cell lineage, have been linked to a variety of inflammatory and autoimmune conditions. We recently reported that activated human CD4(+) T cells produce not only IL-17A and IL-17F homodimers but also an IL-17F/IL-17A heterodimeric cytokine. All three cytokines can induce chemokine secretion from bronchial epithelial cells, albeit with different potencies. In this study, we used small interfering RNA and Abs to IL-17RA and IL-17RC to demonstrate that heterodimeric IL-17F/IL-17A cytokine activity is dependent on the IL-17RA/IL-17RC receptor complex. Interestingly, surface plasmon resonance studies indicate that the three cytokines bind to IL-17RC with comparable affinities, whereas they bind to IL-17RA with different affinities. Thus, we evaluated the effect of the soluble receptors on cytokine activity and we find that soluble receptors exhibit preferential cytokine blockade. IL-17A activity is inhibited by IL-17RA, IL-17F is inhibited by IL-17RC, and a combination of soluble IL-17RA/IL-17RC receptors is required for inhibition of the IL-17F/IL-17A activity. Altogether, these results indicate that human IL-17F/IL-17A cytokine can bind and signal through the same receptor complex as human IL-17F and IL-17A. However, the distinct affinities of the receptor components for IL-17A, IL-17F, and IL-17F/IL-17A heterodimer can be exploited to differentially affect the activity of these cytokines.
机译:由Th17 CD4(+)T细胞谱系产生的IL-17A和IL-17F与多种炎症和自身免疫疾病有关。我们最近报道,活化的人CD4(+)T细胞不仅产生IL-17A和IL-17F同型二聚体,而且还产生IL-17F / IL-17A异二聚体细胞因子。这三种细胞因子均可以诱导支气管上皮细胞的趋化因子分泌,尽管效力不同。在这项研究中,我们使用了对IL-17RA和IL-17RC的小干扰RNA和Abs来证明异二聚体IL-17F / IL-17A细胞因子的活性取决于IL-17RA / IL-17RC受体复合物。有趣的是,表面等离振子共振研究表明这三种细胞因子以相似的亲和力与IL-17RC结合,而它们以不同的亲和力与IL-17RA结合。因此,我们评估了可溶性受体对细胞因子活性的影响,我们发现可溶性受体表现出优先的细胞因子阻滞作用。 IL-17RA抑制IL-17A的活性,IL-17RC抑制IL-17F的活性,而抑制IL-17F / IL-17A的活性需要可溶性IL-17RA / IL-17RC受体的组合。总而言之,这些结果表明人IL-17F / IL-17A细胞因子可以与人IL-17F和IL-17A结合并通过相同的受体复合物发出信号。但是,可以利用针对IL-17A,IL-17F和IL-17F / IL-17A异二聚体的受体组分的独特亲和力来差异地影响这些细胞因子的活性。

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