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MAVS forms functional prion-like aggregates to activate and propagate antiviral innate immune response

机译:MAVS形成功能性病毒样聚集体,以激活和传播抗病毒先天免疫应答

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In response to viral infection, RIG-I-like RNA helicases bind to viral RNA and activate the mitochondrial protein MAVS, which in turn activates the transcription factors IRF3 and NF-κB to induce type I interferons. We have previously shown that RIG-I binds to unanchored lysine-63 (K63) polyubiquitin chains and that this binding is important for MAVS activation; however, the mechanism underlying MAVS activation is not understood. Here, we show that viral infection induces the formation of very large MAVS aggregates, which potently activate IRF3 in the cytosol. We find that a fraction of recombinant MAVS protein forms fibrils that are capable of activating IRF3. Remarkably, the MAVS fibrils behave like prions and effectively convert endogenous MAVS into functional aggregates. We also show that, in the presence of K63 ubiquitin chains, RIG-I catalyzes the conversion of MAVS on the mitochondrial membrane to prion-like aggregates. These results suggest that a prion-like conformational switch of MAVS activates and propagates the antiviral signaling cascade.
机译:响应病毒感染,RIG-I样RNA解旋酶与病毒RNA结合并激活线粒体蛋白MAVS,进而激活转录因子IRF3和NF-κB诱导I型干扰素。先前我们已经证明RIG-1与未锚定的赖氨酸63(K63)多聚泛素链结合,并且这种结合对于MAVS激活很重要。但是,尚不了解MAVS激活的基本机制。在这里,我们表明病毒感染诱导了非常大的MAVS聚集体的形成,从而有效激活了细胞质中的IRF3。我们发现,一部分重组MAVS蛋白形成能够激活IRF3的原纤维。值得注意的是,MAVS原纤维的行为像病毒一样,可以有效地将内源性MAVS转化为功能性聚集体。我们还显示,在存在K63遍在蛋白链的情况下,RIG-I催化线粒体膜上的MAVS转化为病毒样聚集体。这些结果表明,MAVS的病毒样构象开关激活并传播抗病毒信号级联。

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