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首页> 外文期刊>Molecular Immunology >MAVS-dependent IRF3/7 bypass of interferon β-induction restricts the response to measles infection in CD150Tg mouse bone marrow-derived dendritic cells
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MAVS-dependent IRF3/7 bypass of interferon β-induction restricts the response to measles infection in CD150Tg mouse bone marrow-derived dendritic cells

机译:依赖MAVS的IRF3 / 7干扰素β诱导的旁路可限制CD150Tg小鼠骨髓源性树突状细胞对麻疹感染的反应

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Measles virus (MV) infects CD150Tg/Ifnar (IFN alpha receptor)-/- mice but not CD150 (a human MV receptor)-transgenic (Tg) mice. We have shown that bone marrow-derived dendritic cells (BMDCs) from CD150Tg/Ifnar-/- mice are permissive to MV in contrast to those from simple CD150Tg mice, which reveals a crucial role of type I interferon (IFN) in natural tropism against MV. Yet, the mechanism whereby BMDCs produce initial type I IFN has not been elucidated in MV infection. RNA virus infection usually allows cells to generate double-stranded RNA and induce activation of IFN regulatory factor (IRF) 3/7 transcription factors, leading to the production of type I IFN through the retinoic acid-inducible gene I (RIG-I)/melanoma differentiation-associated gene 5 (MDA5)-mitochondrial antiviral signaling protein (MAVS) pathway. In mouse experimental BMDCs models, we found CD150Tg/Mavs-/-BMDCs, but not CD150Tg/Irf3-/-/Irf7-/-BMDCs, permissive to MV. IFN-α/β were not induced in MV-infected CD150Tg/Mavs-/-BMDCs, while IFN-β was subtly induced in CD150Tg/Irf3-/-/Irf7-/-BMDCs. In vivo systemic infection was therefore established by transfer of MV-infected CD150Tg/Mavs-/- BMDCs to CD150Tg/Ifnar-/- mice. These data indicate that MAVS-dependent, IRF3/7-independent IFN-β induction triggers the activation of the IFNAR pathway so as to restrict the spread of MV by infected BMDCs. Hence, MAVS participates in the initial induction of type I IFN in BMDCs and IFNAR protects against MV spreading. We also showed the importance of IL-10-producing CD4+ T cells induced by MV-infected BMDCs in vitro, which may account for immune modulation due to the functional aberration of DCs.
机译:麻疹病毒(MV)感染CD150Tg / Ifnar(IFNα受体)-/-小鼠,但不感染CD150(人类MV受体)-转基因(Tg)小鼠。我们已经显示,与简单CD150Tg小鼠的骨髓相比,CD150Tg / Ifnar-/-小鼠的骨髓树突状细胞(BMDC)允许MV,这揭示了I型干扰素(IFN)在针对MV然而,在MV感染中尚未阐明BMDC产生初始I型IFN的机制。 RNA病毒感染通常使细胞产生双链RNA并诱导IFN调节因子(IRF)3/7转录因子激活,从而导致通过维甲酸诱导型基因I(RIG-I)产生I型IFN。黑色素瘤分化相关基因5(MDA5)-线粒体抗病毒信号蛋白(MAVS)途径。在小鼠实验BMDCs模型中,我们发现CD150Tg / Mavs-/-BMDCs,但没有CD150Tg / Irf3-/-/ Irf7-/-BMDCs,允许MV。在MV感染的CD150Tg / Mavs-/-BMDCs中未诱导IFN-α/β,而在CD150Tg / Irf3-/-/ Irf7-/-BMDCs中隐蔽诱导了IFN-β。因此,通过将MV感染的CD150Tg / Mavs-/-BMDC转移到CD150Tg / Ifnar-/-小鼠中来建立体内全身感染。这些数据表明依赖MAVS,不依赖IRF3 / 7的IFN-β诱导触发了IFNAR途径的激活,从而限制了受感染BMDC传播MV。因此,MAVS参与了BMDC中I型IFN的初始诱导,而IFNAR可以防止MV扩散。我们还显示了由MV感染的BMDC在体外诱导产生IL-10的CD4 + T细胞的重要性,这可能是由于DC的功能异常导致的免疫调节。

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