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RACK1 mediates rewiring of intracellular networks induced by hepatitis C virus infection

机译:RACK1介导由丙型肝炎病毒感染引起的细胞内网络的重新布线

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摘要

Hepatitis C virus (HCV) is a positive-strand RNA virus replicating in a membranous replication organelle composed primarily of double-membrane vesicles (DMVs) having morphological resemblance to autophagosomes. To define the mechanism of DMV formation and the possible link to autophagy, we conducted a yeast two-hybrid screening revealing 32 cellular proteins potentially interacting with HCV proteins. Among these was the Receptor for Activated Protein C Kinase 1 (RACK1), a scaffolding protein involved in many cellular processes, including autophagy. Depletion of RACK1 strongly inhibits HCV RNA replication without affecting HCV internal ribosome entry site (IRES) activity. RACK1 is required for the rewiring of subcellular membranous structures and for the induction of autophagy. RACK1 binds to HCV nonstructural protein 5A (NS5A), which induces DMV formation. NS5A interacts with ATG14L in a RACK1 dependent manner, and with the ATG14L-Beclin1-Vps34-Vps15 complex that is required for autophagosome formation. Both RACK1 and ATG14L are required for HCV DMV formation and viral RNA replication. These results indicate that NS5A participates in the formation of the HCV replication organelle through interactions with RACK1 and ATG14L.
机译:丙型肝炎病毒(HCV)是在膜复制细胞器中复制的正链RNA病毒,该细胞器主要由形态与自噬小体相似的双膜囊泡(DMV)组成。为了定义DMV形成的机制以及与自噬的可能联系,我们进行了酵母双杂交筛选,揭示了32种可能与HCV蛋白相互作用的细胞蛋白。其中之一是活化蛋白C激酶1(RACK1)受体,一种参与许多细胞过程(包括自噬)的支架蛋白。 RACK1的耗竭强烈抑制HCV RNA复制,而不影响HCV内部核糖体进入位点(IRES)活性。 RACK1是亚细胞膜结构的重新布线和自噬诱导所必需的。 RACK1与HCV非结构蛋白5A(NS5A)结合,后者诱导DMV形成。 NS5A以RACK1依赖性方式与ATG14L相互作用,并与自噬小体形成所需的ATG14L-Beclin1-Vps34-Vps15复合物相互作用。 HCV DMV形成和病毒RNA复制都需要RACK1和ATG14L。这些结果表明NS5A通过与RACK1和ATG14L的相互作用参与了HCV复制细胞器的形成。

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