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在培养的肝癌细胞中高效产生具有适应性突变的丙型肝炎病毒感染性病毒颗粒

Efficient production of infectious hepatitis C virus with adaptive mutations in cultured hepatoma cells.

作者信息

Bungyoku Yasuaki, Shoji Ikuo, Makine Tatsuhiko, Adachi Tetsuya, Hayashida Kazumi, Nagano-Fujii Motoko, Ide Yoshi-Hiro, Deng Lin, Hotta Hak

机构信息

Division of Microbiology, Kobe University Graduate School of Medicine, 7-5-1 Kusunoki-cho, Chuo-ku, Kobe, Hyogo 650-0017, Japan.

出版信息

J Gen Virol. 2009 Jul;90(Pt 7):1681-1691. doi: 10.1099/vir.0.010983-0. Epub 2009 Mar 12.

Abstract

Robust production of infectious hepatitis C virus (HCV) in cell culture was realized by using the JFH1 strain and the homologous chimeric J6/JFH1 strain in Huh-7.5 cells, a highly HCV-permissive subclone of Huh-7 cells. In this study, we aimed to establish a more efficient HCV-production system and to gain some insight into the adaptation mechanisms of efficient HCV production. By serial passaging of J6/JFH1-infected Huh-7.5 cells, we obtained culture-adapted J6/JFH1 variants, designated P-27, P-38 and P-47. Sequence analyses revealed that the adaptive mutant viruses P-27, P-38 and P-47 possessed eight mutations [four in E2, two in NS2, one in NS5A and one in NS5B), 10 mutations [two additional mutations in the 5'-untranslated region (5'-UTR) and core] and 11 mutations (three additional mutations in 5'-UTR, core and NS5B), respectively. We introduced amino acid substitutions into the wild-type J6/JFH1 clone, generated recombinant viruses with adaptive mutations and analysed their infectivity and ability to produce infectious viruses. The viruses with the adaptive mutations exhibited higher expression of HCV proteins than did the wild type in Huh-7.5 cells. Moreover, we provide evidence suggesting that the mutation N534H in the E2 glycoprotein of the mutant viruses conferred an advantage at the entry level. We thus demonstrate that an efficient HCV-production system could be obtained by introducing adaptive mutations into the J6/JFH1 genome. The J6/JFH1-derived mutant viruses presented here would be a good tool for producing HCV particles with enhanced infectivity and for studying the molecular mechanism of HCV entry.

摘要

通过在Huh-7.5细胞(Huh-7细胞的一个高度HCV易感亚克隆)中使用JFH1毒株和同源嵌合J6/JFH1毒株,实现了丙型肝炎病毒(HCV)在细胞培养中的高效生产。在本研究中,我们旨在建立一个更高效的HCV生产系统,并深入了解高效HCV生产的适应机制。通过对感染J6/JFH1的Huh-7.5细胞进行连续传代,我们获得了适应培养的J6/JFH1变体,命名为P-27、P-38和P-47。序列分析显示,适应性突变病毒P-27、P-38和P-47分别具有8个突变(E2中有4个、NS2中有2个、NS5A中有1个和NS5B中有1个)、10个突变(5'非翻译区(5'-UTR)和核心区中有另外2个突变)和11个突变(5'-UTR、核心区和NS5B中有另外3个突变)。我们将氨基酸替换引入野生型J6/JFH1克隆,产生具有适应性突变的重组病毒,并分析它们的感染性和产生感染性病毒的能力。具有适应性突变的病毒在Huh-7.5细胞中比野生型表现出更高的HCV蛋白表达。此外,我们提供的证据表明,突变病毒E2糖蛋白中的N534H突变在病毒进入水平上赋予了优势。因此,我们证明通过将适应性突变引入J6/JFH1基因组可以获得高效的HCV生产系统。本文介绍的源自J6/JFH1的突变病毒将是生产具有增强感染性的HCV颗粒以及研究HCV进入分子机制的良好工具。

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