首页> 外文期刊>PLoS Pathogens >The amino-terminus of the hepatitis C virus (HCV) p7 viroporin and its cleavage from glycoprotein E2-p7 precursor determine specific infectivity and secretion levels of HCV particle types
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The amino-terminus of the hepatitis C virus (HCV) p7 viroporin and its cleavage from glycoprotein E2-p7 precursor determine specific infectivity and secretion levels of HCV particle types

机译:丙型肝炎病毒(HCV)p7 viroporin的氨基末端及其从糖蛋白E2-p7前体的裂解决定了HCV颗粒类型的特异性感染性和分泌水平

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Viroporins are small transmembrane proteins with ion channel activities modulating properties of intracellular membranes that have diverse proviral functions. Hepatitis C virus (HCV) encodes a viroporin, p7, acting during assembly, envelopment and secretion of viral particles (VP). HCV p7 is released from the viral polyprotein through cleavage at E2-p7 and p7-NS2 junctions by signal peptidase, but also exists as an E2p7 precursor, of poorly defined properties. Here, we found that ectopic p7 expression in HCVcc-infected cells reduced secretion of particle-associated E2 glycoproteins. Using biochemical assays, we show that p7 dose-dependently slows down the ER-to-Golgi traffic, leading to intracellular retention of E2, which suggested that timely E2p7 cleavage and p7 liberation are critical events to control E2 levels. By studying HCV mutants with accelerated E2p7 processing, we demonstrate that E2p7 cleavage controls E2 intracellular expression and secretion levels of nucleocapsid-free subviral particles and infectious virions. In addition, our imaging data reveal that, following p7 liberation, the amino-terminus of p7 is exposed towards the cytosol and coordinates the encounter between NS5A and NS2-based assembly sites loaded with E1E2 glycoproteins, which subsequently leads to nucleocapsid envelopment. We identify punctual mutants at p7 membrane interface that, by abrogating NS2/NS5A interaction, are defective for transmission of infectivity owing to decreased secretion of core and RNA and to increased secretion of non/partially-enveloped particles. Altogether, our results indicate that the retarded E2p7 precursor cleavage is essential to regulate the intracellular and secreted levels of E2 through p7-mediated modulation of the cell secretory pathway and to unmask critical novel assembly functions located at p7 amino-terminus.
机译:Viroporins是一种小的跨膜蛋白,具有离子通道活性,可调节具有多种前病毒功能的细胞内膜的特性。丙型肝炎病毒(HCV)编码viroporin p7,在病毒颗粒(VP)的组装,包封和分泌过程中起作用。 HCV p7通过信号肽酶在E2-p7和p7-NS2连接处的裂解从病毒多蛋白中释放出来,但也以E2p7前体的形式存在,但其定义不明确。在这里,我们发现在HCVcc感染的细胞中异位p7表达减少了与颗粒相关的E2糖蛋白的分泌。使用生化分析,我们显示p7剂量依赖性地减慢了ER到高尔基体的运输,导致E2的细胞内滞留,这表明及时E2p7裂解和p7释放是控制E2水平的关键事件。通过研究具有加速的E2p7加工的HCV突变体,我们证明E2p7裂解可控制E2细胞内表达以及无核衣壳亚病毒颗粒和感染性病毒体的分泌水平。此外,我们的成像数据表明,p7释放后,p7的氨基末端暴露于细胞质,并协调了装载有E1E2糖蛋白的NS5A和基于NS2的装配位点之间的相遇,随后导致了核衣壳的包封。我们通过取消NS2 / NS5A相互作用,在p7膜界面处发现了点突变体,由于核心和RNA的分泌减少以及非/部分包被的颗粒的分泌增加,因此存在传染性传播缺陷。总而言之,我们的结果表明,延迟的E2p7前体裂解对于通过p7介导的细胞分泌途径调节E2的细胞内和分泌水平和揭示位于p7氨基末端的关键新型装配功能至关重要。

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