From the Immunology Group, Bioprocessing Technology Institute, Agency for Science, Technology & Research (A*STAR), Singapore,
From the Immunology Group, Bioprocessing Technology Institute, Agency for Science, Technology & Research (A*STAR), Singapore.
J Biol Chem. 2019 Apr 19;294(16):6430-6438. doi: 10.1074/jbc.RA118.005868. Epub 2019 Feb 25.
RIG-I senses viral RNA in the cytosol and initiates host innate immune response by triggering the production of type 1 interferon. A recent RNAi knockdown screen yielded close to hundred host genes whose products affected viral RNA-induced IFN-β production and highlighted the complexity of the antiviral response. The stress granule protein G3BP1, known to arrest mRNA translation, was identified as a regulator of RIG-I-induced IFN-β production. How G3BP1 functions in RIG-I signaling is not known, however. Here, we overexpress G3BP1 with RIG-I in HEK293T cells and found that G3BP1 significantly enhances RIG-I-induced mRNA synthesis. More importantly, we demonstrate that G3BP1 binds RIG-I and that this interaction involves the C-terminal RGG domain of G3BP1. Confocal microscopy studies also show G3BP1 co-localization with RIG-I and with infecting vesicular stomatitis virus in Cos-7 cells. Interestingly, immunoprecipitation studies using biotin-labeled viral dsRNA or poly(I·C) and cell lysate-derived or translated G3BP1 indicated that G3BP1 could directly bind these substrates and again via its RGG domain. Computational modeling further revealed a juxtaposed interaction between G3BP1 RGG and RIG-I RNA-binding domains. Together, our data reveal G3BP1 as a critical component of RIG-I signaling and possibly acting as a co-sensor to promote RIG-I recognition of pathogenic RNA.
RIG-I 在细胞质中检测到病毒 RNA,并通过触发 1 型干扰素的产生来启动宿主先天免疫反应。最近的 RNAi 敲低筛选产生了近百种宿主基因,其产物影响病毒 RNA 诱导的 IFN-β 产生,并突出了抗病毒反应的复杂性。应激颗粒蛋白 G3BP1 已知能阻止 mRNA 翻译,被鉴定为 RIG-I 诱导 IFN-β 产生的调节剂。然而,G3BP1 在 RIG-I 信号中的作用机制尚不清楚。在这里,我们在 HEK293T 细胞中与 RIG-I 过表达 G3BP1,发现 G3BP1 显著增强了 RIG-I 诱导的 mRNA 合成。更重要的是,我们证明 G3BP1 与 RIG-I 结合,这种相互作用涉及 G3BP1 的 C 末端 RGG 结构域。共聚焦显微镜研究还表明 G3BP1 在 Cos-7 细胞中与 RIG-I 和感染性水疱性口炎病毒共定位。有趣的是,使用生物素标记的病毒 dsRNA 或 poly(I·C)和细胞裂解物衍生的或翻译的 G3BP1 进行免疫沉淀研究表明,G3BP1 可以直接结合这些底物,并再次通过其 RGG 结构域。计算建模进一步揭示了 G3BP1 RGG 和 RIG-I RNA 结合结构域之间的毗邻相互作用。总之,我们的数据揭示了 G3BP1 是 RIG-I 信号的关键组成部分,并且可能作为共受体促进 RIG-I 对致病性 RNA 的识别。