Department of Microbiology and Immunology, Geisel School of Medicine at Dartmouth, Lebanon, NH 03756.
Department of Microbiology and Immunology, Montana State University, Bozeman, MT 59718; and.
J Immunol. 2020 Dec 1;205(11):3058-3070. doi: 10.4049/jimmunol.2000802. Epub 2020 Oct 21.
RIG-I-like receptors (RLR) are cytosolic RNA sensors that signal through the MAVS adaptor to activate IFN responses against viruses. Whether the RLR family has broader effects on host immunity against other pathogen families remains to be fully explored. In this study, we demonstrate that MDA5/MAVS signaling was essential for host resistance against pulmonary challenge through the regulation of antifungal leukocyte responses in mice. Activation of MDA5/MAVS signaling was driven by dsRNA from live serving as a key vitality-sensing pattern recognition receptor. Interestingly, induction of type I IFNs after challenge was only partially dependent on MDA5/MAVS signaling, whereas type III IFN expression was entirely dependent on MDA5/MAVS signaling. Ultimately, type I and III IFN signaling drove the expression of CXCL10. Furthermore, the MDA5/MAVS-dependent IFN response was critical for the induction of optimal antifungal neutrophil killing of spores. In conclusion, our data broaden the role of the RLR family to include a role in regulating antifungal immunity against .
RIG-I 样受体 (RLR) 是细胞溶质 RNA 传感器,通过 MAVS 衔接子信号传导激活针对病毒的 IFN 反应。RLR 家族是否对宿主针对其他病原体家族的免疫具有更广泛的影响仍有待充分探索。在这项研究中,我们证明 MDA5/MAVS 信号传导对于宿主抵抗肺部挑战至关重要,这是通过调节小鼠中的抗真菌白细胞反应实现的。MDA5/MAVS 信号的激活是由活 中的 dsRNA 驱动的,dsRNA 作为关键的活力感应模式识别受体。有趣的是, 挑战后 I 型 IFN 的诱导仅部分依赖于 MDA5/MAVS 信号传导,而 III 型 IFN 的表达完全依赖于 MDA5/MAVS 信号传导。最终,I 型和 III 型 IFN 信号传导驱动 CXCL10 的表达。此外,MDA5/MAVS 依赖性 IFN 反应对于诱导最佳抗真菌中性粒细胞杀伤 孢子至关重要。总之,我们的数据拓宽了 RLR 家族的作用,包括在调节针对 的抗真菌免疫中的作用。