首页> 外文期刊>Journal of interferon and cytokine research: The official journal of the International Society for Interferon and Cytokine Research >RNA Helicase LGP2 Negatively Regulates RIG-I Signaling by Preventing TRIM25-Mediated Caspase Activation and Recruitment Domain Ubiquitination
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RNA Helicase LGP2 Negatively Regulates RIG-I Signaling by Preventing TRIM25-Mediated Caspase Activation and Recruitment Domain Ubiquitination

机译:RNA Helicase LGP2通过预防Trim25介导的胱天蛋白酶活化和募集结构域泛素来负调节钻机 - I信号传导

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摘要

The retinoic acid-inducible gene I (RIG-I)-like receptors (RLRs) are a family of cytosolic pattern recognition receptors that play a critical role in binding viral RNA and triggering antiviral immune responses. The RLR LGP2 (or DHX58) is a known regulator of the RIG-I signaling pathway; however, the underlying mechanism by which LGP2 regulates RIG-I signaling is poorly understood. To better understand the effects of LGP2 on RIG-I-specific signaling and myeloid cell responses, we probed RIG-I signaling using a highly specific RIG-I agonist to compare transcriptional profiles between WT and Dhx58(-/-) C57BL6 bone marrow-derived dendritic cells. Dhx58(-/-) cells exhibited a marked increase in the magnitude and kinetics of type I interferon (IFN) induction and a broader antiviral response as early as 1 h post-treatment. We determined that LGP2 inhibited RIG-I-mediated IFN-beta, IRF-3, and NF-kappa B promoter activities, indicating a function upstream of the RLR adaptor protein mitochondrial antiviral signaling. Mutational analysis of LGP2 revealed that RNA binding, ATP hydrolysis, and the C-terminal domain fragment were dispensable for inhibiting RIG-I signaling. Using mass spectrometry, we discovered that LGP2 interacted with the E3 ubiquitin ligase TRIM25. Finally, we determined that LGP2 inhibited the TRIM25-mediated K63-specific ubiquitination of the RIG-I N-terminus required for signaling activation.
机译:视黄酸 - 诱导基因I(RIG-I)的受体(RLR)是一种细胞溶质模式识别受体系列,其在结合病毒RNA中发挥着关键作用并引发抗病毒免疫应答。 RLR LGP2(或DHX58)是RIAR-I信号通路的已知调节器;然而,LGP2调节钻机I信令的潜在机制很差。为了更好地了解LGP2对钻机I-特定信号传导和骨髓电池响应的影响,我们使用高度特异性的钻机-1激动剂探测钻机 - I信号传导,以比较WT和DHX58( - / - )C57BL 6骨之间的转录谱骨髓衍生的树突细胞。 DHX58( - / - )细胞表现出I型干扰素(IFN)诱导的幅度和动力学的显着增加,并且早在治疗后1小时就更广泛的抗病毒反应。我们确定LGP2抑制RGP2介导的IFN-β,IRF-3和NF-Kappa B启动子活性,表明RLR适配器蛋白线粒体抗病毒信号上游的功能。 LGP2的突变分析显示RNA结合,ATP水解和C-末端结构域片段用于抑制钻机-1信号传导。使用质谱法,我们发现LGP2与E3泛素连接酶修剪25相互作用。最后,我们确定LGP2抑制了信号传导激活所需的钻头I n-末端的Trim25介导的K63特异性泛素。

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