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Reconstitution of the RIG-I Pathway Reveals a Signaling Role of Unanchored Polyubiquitin Chains in Innate Immunity

机译:RIG-I途径的重组揭示了先天免疫中未锚定的多泛素链的信号传导作用。

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RIG-I detects invading viral RNA and activates the transcription factors NF-kB and IRF3 through the mitochondrial protein MAVS. Here we show that RNA bearing 50-triphosphate strongly activates the RIG-I–IRF3 signaling cascade in a reconstituted system composed of RIG-I, mitochondria, and cytosol. Activation of RIG-I requires not only RNA but also polyubiquitin chains linked through lysine 63 (K63) of ubiquitin. RIG-I binds specifically to K63- polyubiquitin chains through its tandem CARD domains in a manner that depends on RNA and ATP. Mutations in the CARD domains that abrogate ubiquitin binding also impair RIG-I activation. Remarkably, unanchored K63-ubiquitin chains, which are not conjugated to any target protein, potently activate RIG-I. These ubiquitin chains function as an endogenous ligand of RIG-I in human cells. Our results delineate the mechanism of RIG-I activation, identify CARD domains as a ubiquitin sensor, and demonstrate that unanchored K63-polyubiquitin chains are signaling molecules in antiviral innate immunity.
机译:RIG-I通过线粒体蛋白MAVS检测入侵的病毒RNA并激活转录因子NF-kB和IRF3。在这里,我们显示带有50-三磷酸酯的RNA在由RIG-1,线粒体和胞质溶胶组成的重构系统中强烈激活RIG-1-IRF3信号级联。 RIG-I的激活不仅需要RNA,还需要通过泛素的赖氨酸63(K63)连接的多泛素链。 RIG-1以依赖于RNA和ATP的方式通过其串联CARD域与K63-多聚泛素链特异性结合。消除遍在蛋白结合的CARD结构域突变也损害RIG-I激活。值得注意的是,未与任何靶蛋白偶联的未锚定的K63泛素链有效激活RIG-I。这些泛素链在人类细胞中作为RIG-1的内源性配体发挥作用。我们的结果描述了RIG-I激活的机制,将CARD域鉴定为泛素传感器,并证明未锚定的K63-聚泛素链是抗病毒先天免疫中的信号分子。

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