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RNA结合蛋白hnRNPM和ELAVL1在核酸传感器cGAS和RIG-I下游促进I型干扰素的诱导。

RNA-binding proteins hnRNPM and ELAVL1 promote type-I interferon induction downstream of the nucleic acid sensors cGAS and RIG-I.

作者信息

Kirchhoff Alexander, Herzner Anna-Maria, Urban Christian, Piras Antonio, Düster Robert, Mahlberg Julia, Grünewald Agathe, Schlee-Guimarães Thais M, Ciupka Katrin, Leka Petro, Bootz Robert J, Wallerath Christina, Hunkler Charlotte, de Regt Ann Kristin, Kümmerer Beate M, Christensen Maria Hønholt, Schmidt Florian I, Lee-Kirsch Min Ae, Günther Claudia, Kato Hiroki, Bartok Eva, Hartmann Gunther, Geyer Matthias, Pichlmair Andreas, Schlee Martin

机构信息

Institute of Clinical Chemistry and Clinical Pharmacology, University Hospital Bonn, Bonn, Germany.

Department of Cancer Immunology and Immune Modulation, Boehringer Ingelheim Pharma GmbH & Co. KG, Biberach an der Riß, Germany.

出版信息

EMBO J. 2025 Feb;44(3):824-853. doi: 10.1038/s44318-024-00331-x. Epub 2024 Dec 20.

Abstract

The cytosolic nucleic acid sensors RIG-I and cGAS induce type-I interferon (IFN)-mediated immune responses to RNA and DNA viruses, respectively. So far no connection between the two cytosolic pathways upstream of IKK-like kinase activation has been investigated. Here, we identify heterogeneous nuclear ribonucleoprotein M (hnRNPM) as a positive regulator of IRF3 phosphorylation and type-I IFN induction downstream of both cGAS and RIG-I. Combining interactome analysis with genome editing, we further uncover the RNA-binding protein ELAV-like protein 1 (ELAVL1; also known as human antigen R, HuR) as an hnRNPM interactor. Depletion of hnRNPM or ELAVL1 impairs type-I IFN induction by herpes simplex virus 1 or Sendai virus. In addition, we show that hnRNPM and ELAVL1 interact with TANK-binding kinase 1, IκB kinase ε, IκB kinase β, and NF-κB p65. Our confocal microscopy experiments demonstrate cytosolic and perinuclear interactions between hnRNPM, ELAVL1, and TBK1. Furthermore, pharmacological inhibition of ELAVL1 strongly reduces cytokine release from type-I interferonopathy patient fibroblasts. The RNA-binding proteins hnRNPM and ELAVL1 are the first non-redundant regulators to bridge the cGAS/STING and RIG-I/MAVS pathways. Overall, our study characterizes the hnRNPM-ELAVL1 complex as a novel system promoting antiviral defense, pointing to a potential therapeutic target to reduce auto-inflammation in patients with type-I interferonopathies.

摘要

胞质核酸传感器维甲酸诱导基因I(RIG-I)和环鸟苷酸-腺苷酸合成酶(cGAS)分别诱导针对RNA和DNA病毒的I型干扰素(IFN)介导的免疫反应。到目前为止,尚未研究IKK样激酶激活上游的这两种胞质途径之间的联系。在这里,我们确定异质性核核糖核蛋白M(hnRNPM)是cGAS和RIG-I下游IRF3磷酸化和I型IFN诱导的正向调节因子。通过将相互作用组分析与基因组编辑相结合,我们进一步发现RNA结合蛋白ELAV样蛋白1(ELAVL1;也称为人抗原R,HuR)是hnRNPM的相互作用蛋白。hnRNPM或ELAVL1的缺失会损害单纯疱疹病毒1或仙台病毒诱导的I型IFN。此外,我们表明hnRNPM和ELAVL1与肿瘤坏死因子受体相关因子结合激酶1(TANK-binding kinase 1,TBK1)、IκB激酶ε(IκB kinase ε,IKKε)、IκB激酶β(IκB kinase β,IKKβ)和核因子κB p65(NF-κB p65)相互作用。我们的共聚焦显微镜实验证明了hnRNPM、ELAVL1和TBK1之间的胞质和核周相互作用。此外,ELAVL1的药理学抑制强烈降低I型干扰素病患者成纤维细胞的细胞因子释放。RNA结合蛋白hnRNPM和ELAVL1是连接cGAS/干扰素基因刺激蛋白(STING)和RIG-I/线粒体抗病毒信号蛋白(MAVS)途径的首个非冗余调节因子。总体而言,我们的研究将hnRNPM-ELAVL1复合物表征为一种促进抗病毒防御的新型系统,指出了一个减少I型干扰素病患者自身炎症的潜在治疗靶点。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/3863/11791083/8bbc881b343d/44318_2024_331_Fig1_HTML.jpg

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