首页> 美国卫生研究院文献>Journal of Virology >Production of Hepatitis C Virus Lacking the Envelope-Encoding Genes for Single-Cycle Infection by Providing Homologous Envelope Proteins or Vesicular Stomatitis Virus Glycoproteins in trans
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Production of Hepatitis C Virus Lacking the Envelope-Encoding Genes for Single-Cycle Infection by Providing Homologous Envelope Proteins or Vesicular Stomatitis Virus Glycoproteins in trans

机译:通过提供反转录的同源信封蛋白或水泡性口腔炎病毒糖蛋白缺乏单周期感染的信封编码基因的丙型肝炎病毒的生产

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摘要

Hepatitis C virus (HCV) infection is a major worldwide health problem. The envelope glycoproteins are the major components of viral particles. Here we developed a trans-complementation system that allows the production of infectious HCV particles in whose genome the regions encoding envelope proteins are deleted (HCVΔE). The lack of envelope proteins could be efficiently complemented by the expression of homologous envelope proteins in trans. HCVΔE production could be enhanced significantly by previously described adaptive mutations in NS3 and NS5A. Moreover, HCVΔE could be propagated and passaged in packaging cells stably expressing HCV envelope proteins, resulting in only single-round infection in wild-type cells. Interestingly, we found that vesicular stomatitis virus (VSV) glycoproteins could efficiently rescue the production of HCV lacking endogenous envelope proteins, which no longer required apolipoprotein E for virus production. VSV glycoprotein-mediated viral entry could allow for the bypass of the natural HCV entry process and the delivery of HCV replicon RNA into HCV receptor-deficient cells. Our development provides a new tool for the production of single-cycle infectious HCV particles, which should be useful for studying individual steps of the HCV life cycle and may also provide a new strategy for HCV vaccine development.
机译:丙型肝炎病毒(HCV)感染是全球主要的健康问题。包膜糖蛋白是病毒颗粒的主要成分。在这里,我们开发了一种反式互补系统,可产生感染性HCV颗粒,其基因组中编码包膜蛋白的区域被删除(HCVΔE)。缺乏包膜蛋白可以通过反式表达同源包膜蛋白得到有效补充。 HCVΔE的产生可以通过先前描述的NS3和NS5A中的适应性突变来显着提高。此外,HCVΔE可以在稳定表达HCV包膜蛋白的包装细胞中繁殖和传代,仅导致野生型细胞单轮感染。有趣的是,我们发现水泡性口炎病毒(VSV)糖蛋白可以有效地拯救缺乏内源性包膜蛋白的HCV的产生,而后者不再需要载脂蛋白E来生产病毒。 VSV糖蛋白介导的病毒进入可以绕过天然HCV进入过程,并将HCV复制子RNA输送到HCV受体缺陷型细胞中。我们的开发为生产单周期感染性HCV颗粒提供了一种新工具,这对于研究HCV生命周期的各个步骤将很有用,也可能为HCV疫苗开发提供新的策略。

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