首页> 外文期刊>Blood: The Journal of the American Society of Hematology >IL-4 enhances IFN-lambda1 (IL-29) production by plasmacytoid DCs via monocyte secretion of IL-1Ra.
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IL-4 enhances IFN-lambda1 (IL-29) production by plasmacytoid DCs via monocyte secretion of IL-1Ra.

机译:IL-4通过IL-1Ra的单核细胞分泌增强浆细胞样DC产生的IFN-lambda1(IL-29)。

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摘要

The type-III interferon (IFN) family is composed of 3 molecules in humans: IFN-lambda1 (interleukin-29 [IL-29]), IFN-lambda2 (IL-28A), and IFN-lambda3 (IL-28B), each of which signals through the same receptor complex. Plasmacytoid dendritic cells (pDCs) are major IFN-lambda producers among peripheral lymphocytes. Recently, it has been shown that IFN-lambda1 exerts a powerful inhibitory effect over the T-helper 2 (Th2) response by antagonizing the effect of IL-4 on CD4(+) T cells and inhibiting the production of Th2-associated cytokines. Here, we asked whether Th2 cytokines exert reciprocal control over IFN-lambda production. IL-4 treatment during stimulation of human peripheral lymphocytes significantly elevated IFN-lambda1 transcription and secretion. However, pDCs were not directly responsive to IL-4. Using depletion and reconstitution experiments, we showed that IL-4-responsive monocytes are an intermediary cell, responding to IL-4 by elevating their secretion of IL-1 receptor antagonist (IL-Ra); this IL-1Ra acts on pDCs to elevate their IFN-lambda1 output. Thus, our experiments revealed a novel mechanism for regulation of both IFN-lambda1 production and pDC function, and suggests an expanded immunomodulatory role for Th2-associated cytokines.
机译:III型干扰素(IFN)家族由人类中的3个分子组成:IFN-lambda1(interleukin-29 [IL-29]),IFN-lambda2(IL-28A)和IFN-lambda3(IL-28B),每个信号都通过相同的受体复合物发出信号。浆细胞样树突状细胞(pDC)是外周淋巴细胞中主要的IFN-λ生产者。最近,研究表明,IFN-lambda1通过拮抗IL-4对CD4(+)T细胞的作用并抑制Th2相关细胞因子的产生,对T-helper 2(Th2)反应产生强大的抑制作用。在这里,我们询问Th2细胞因子是否对IFN-λ产生相互控制。在刺激人外周血淋巴细胞期间进行IL-4治疗可显着提高IFN-lambda1的转录和分泌。但是,pDC对IL-4没有直接反应。使用耗竭和重建实验,我们显示IL-4反应性单核细胞是中介细胞,通过增加其IL-1受体拮抗剂(IL-Ra)的分泌来对IL-4作出反应。该IL-1Ra作用于pDC,以提高其IFN-lambda1的输出。因此,我们的实验揭示了调节IFN-lambda1产生和pDC功能的新机制,并提出了Th2相关细胞因子的扩大的免疫调节作用。

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