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DHX36 Enhances RIG-I Signaling by Facilitating PKR-Mediated Antiviral Stress Granule Formation

机译:DHX36通过促进PKR介导的抗病毒应激颗粒形成来增强RIG-I信号传导

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摘要

RIG-I is a DExD/H-box RNA helicase and functions as a critical cytoplasmic sensor for RNA viruses to initiate antiviral interferon (IFN) responses. Here we demonstrate that another DExD/H-box RNA helicase DHX36 is a key molecule for RIG-I signaling by regulating double-stranded RNA (dsRNA)-dependent protein kinase (PKR) activation, which has been shown to be essential for the formation of antiviral stress granule (avSG). We found that DHX36 and PKR form a complex in a dsRNA-dependent manner. By forming this complex, DHX36 facilitates dsRNA binding and phosphorylation of PKR through its ATPase/helicase activity. Using DHX36 KO-inducible MEF cells, we demonstrated that DHX36 deficient cells showed defect in IFN production and higher susceptibility in RNA virus infection, indicating the physiological importance of this complex in host defense. In summary, we identify a novel function of DHX36 as a critical regulator of PKR-dependent avSG to facilitate viral RNA recognition by RIG-I-like receptor (RLR).
机译:RIG-I是一种DExD / H-box RNA解旋酶,可作为RNA病毒引发抗病毒干扰素(IFN)反应的关键细胞质传感器。在这里,我们证明了另一种DExD / H-box RNA解旋酶DHX36是通过调节双链RNA(dsRNA)依赖性蛋白激酶(PKR)激活来进行RIG-I信号传导的关键分子,已证明这对形成至关重要抗病毒应激颗粒(avSG)。我们发现DHX36和PKR以dsRNA依赖性的方式形成复合物。通过形成这种复合物,DHX36通过其ATPase / helasease活性促进dsRNA结合和PKR磷酸化。使用DHX36 KO诱导的MEF细胞,我们证明DHX36缺陷细胞在IFN产生中显示出缺陷,并在RNA病毒感染中表现出更高的敏感性,表明该复合物在宿主防御中的生理重要性。总之,我们确定DHX36作为PKR依赖性avSG的关键调节剂的新功能,以促进RIG-I样受体(RLR)对病毒RNA的识别。

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