首页> 美国卫生研究院文献>Journal of Virology >Development and Application of Hepatitis C Reporter Viruses with Genotype 1 to 7 Core-Nonstructural Protein 2 (NS2) Expressing Fluorescent Proteins or Luciferase in Modified JFH1 NS5A
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Development and Application of Hepatitis C Reporter Viruses with Genotype 1 to 7 Core-Nonstructural Protein 2 (NS2) Expressing Fluorescent Proteins or Luciferase in Modified JFH1 NS5A

机译:在修饰的JFH1 NS5A中表达荧光蛋白或荧光素酶的基因型1至7核心非结构蛋白2(NS2)的丙型肝炎报道病毒的开发和应用

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摘要

To facilitate genotype-specific high-throughput studies of hepatitis C virus (HCV), we have developed reporter viruses using JFH1-based recombinants expressing core-nonstructural protein 2 (NS2) of genotype 1 to 7 prototype isolates. We introduced enhanced green fluorescent protein (EGFP) into NS5A domain III of the genotype 2a virus J6/JFH1 [2a(J6)]. During Huh7.5 cell culture adaptation, 2a(J6)-EGFP acquired a 40-amino-acid (aa) (Δ40) or 25-aa (Δ25) deletion in NS5A domain II, rescuing the impairment of viral assembly caused by the EGFP insertion. Δ40 conferred efficient growth characteristics to 2a(J6) tagged with EGFP, DsRed-Express2, mCherry, or Renilla luciferase (RLuc), yielding peak supernatant infectivity titers of 4 to 5 log10 focus-forming units (FFU)/ml. 2a(J6) with Δ40 or Δ25 was fully viable in Huh7.5 cells. In human liver chimeric mice, 2a(J6)-EGFPΔ40 acquired various deletions in EGFP, while 2a(J6)Δ40 did not show an impaired viability. We further developed panels of JFH1-based genotype 1 to 7 core-NS2 recombinants expressing EGFP- or RLuc-NS5AΔ40 fusion proteins. In cell culture, the different EGFP recombinants showed growth characteristics comparable to those of the nontagged recombinants, with peak infectivity titers of 4 to 5 log10 FFU/ml. RLuc recombinants showed slightly less efficient growth characteristics, with peak infectivity titers up to 10-fold lower. Overall, the EGFP and RLuc recombinants were genetically stable after one viral passage. The usefulness of these reporter viruses for high-throughput fluorescence- and luminescence-based studies of HCV-receptor interactions and serum-neutralizing antibodies was demonstrated. Finally, using RLuc viruses, we showed that the genotype-specific core-NS2 sequence did not influence the response to alfa-2b interferon (IFN-alfa-2b) and that genotype 1 to 7 viruses all responded to treatment with p7 ion channel inhibitors.
机译:为了促进丙型肝炎病毒(HCV)的基因型特定的高通量研究,我们已经开发了使用基于JFH1的重组子来表达报告基因的病毒,该重组子表达了基因型1至7原型分离株的核心非结构蛋白2(NS2)。我们将增强的绿色荧光蛋白(EGFP)引入到基因型2a病毒J6 / JFH1 [2a(J6)]的NS5A域III中。在Huh7.5细胞培养适应过程中,2a(J6)-EGFP在NS5A域II中获得了40个氨基酸(aa)(Δ40)或25-aa(Δ25)缺失,从而挽救了由EGFP引起的病毒装配损伤插入。 Δ40为标记有EGFP,DsRed-Express2,mCherry或Renilla荧光素酶(RLuc)的2a(J6)赋予有效的生长特性,产生的上清液感染力峰值为4至5 log10个焦点形成单位(FFU)/ ml。带有Δ40或Δ25的2a(J6)在Huh7.5细胞中完全可行。在人类肝嵌合小鼠中,2a(J6)-EGFPΔ40获得了EGFP的各种缺失,而2a(J6)Δ40没有显示出生存能力受损。我们进一步开发了表达EGFP或RLuc-NS5AΔ40融合蛋白的基于JFH1的基因型1至7个核心NS2重组子。在细胞培养中,不同的EGFP重组体显示出与非标记重组体可比的生长特性,其最高感染力滴度为4至5 log10 FFU / ml。 RLuc重组体显示出稍低的有效生长特性,峰值感染力滴度降低了10倍。总体而言,一次病毒传代后,EGFP和RLuc重组子在遗传上是稳定的。证明了这些报告病毒对于基于高通量荧光和发光的HCV受体相互作用和血清中和抗体研究的有用性。最后,使用RLuc病毒,我们显示了基因型特异性核心NS2序列不影响对alfa-2b干扰素(IFN-alfa-2b)的反应,并且基因型1至7病毒均对使用p7离子通道抑制剂的治疗产生了反应。

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