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Completion of the Entire Hepatitis C Virus Life Cycle in Vero Cells Derived from Monkey Kidney

机译:完整的丙型肝炎病毒生命周期在猴肾来源的Vero细胞中的完成

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ABSTRACT A hepatitis C virus (HCV) cell culture system incorporating the JFH-1 strain and the human hepatoma cell line HuH-7 enabled the production of infectious HCV particles. Several host factors were identified as essential for HCV replication. Supplementation of these factors in nonhepatic human cell lines enabled HCV replication and particle production. Vero cells established from monkey kidney are commonly used for the production of vaccines against a variety of viruses. In this study, we aimed to establish a novel Vero cell line to reconstruct the HCV life cycle. Unmodified Vero cells did not allow HCV infection or replication. The expression of microRNA 122 (miR-122), an essential factor for HCV replication, is notably low in Vero cells. Therefore, we supplemented Vero cells with miR-122 and found that HCV replication was enhanced. However, Vero cells that expressed miR-122 still did not allow HCV infection. We supplemented HCV receptor molecules and found that scavenger receptor class B type I (SRBI) was essential for HCV infection in Vero cells. The supplementation of apolipoprotein E (ApoE), a host factor important for virus production, enabled the production of infectious virus in Vero cells. Finally, we created a Vero cell line that expressed the essential factors miR-122, SRBI, and ApoE; the entire HCV life cycle, including infection, replication, and infectious virus production, was completed in these cells. In conclusion, we demonstrated that miR-122, SRBI, and ApoE were necessary and sufficient for the completion of the entire HCV life cycle in nonhuman, nonhepatic Vero cells. IMPORTANCE HCV is a major cause of chronic liver diseases worldwide, and an effective prophylactic HCV vaccine is needed. For safety reasons, the current HCV cell culture system using HuH-7 cells, which was established from a hepatocellular carcinoma, is not suitable for the production of a vaccine against HCV. A robust HCV production system using non-cancer-derived cells is indispensable for this purpose. In this study, we wanted to establish a novel HCV cell culture system using Vero cells, which are widely used in the production of vaccines against different viruses. We identified the minimum essential host factors for the completion of the entire HCV life cycle in Vero cells to develop a novel HCV cell culture system. A cell culture system that uses Vero cells will be useful not only for HCV vaccine production but also for the further elucidation of the mechanisms of various HCV-host interactions.
机译:摘要结合了JFH-1株和人类肝癌细胞系HuH-7的丙型肝炎病毒(HCV)细胞培养系统能够生产可感染的HCV颗粒。几个宿主因素被确定为HCV复制必不可少的。在非肝人类细胞系中补充这些因子可以使HCV复制和产生颗粒。由猴肾建立的Vero细胞通常用于生产针对多种病毒的疫苗。在这项研究中,我们旨在建立一种新型的Vero细胞系,以重建HCV的生命周期。未经修饰的Vero细胞不允许HCV感染或复制。 microRNA 122(miR-122)的表达是HCV复制的必需因子,在Vero细胞中的表达特别低。因此,我们用miR-122补充了Vero细胞,发现HCV复制得到增强。但是,表达miR-122的Vero细胞仍然不允许HCV感染。我们补充了HCV受体分子,发现I类清道夫受体B型(SRBI)对于Vero细胞中的HCV感染至关重要。补充载脂蛋白E(ApoE)是病毒生产的重要宿主因子,可在Vero细胞中产生传染性病毒。最后,我们创建了一个表达必需因子miR-122,SRBI和ApoE的Vero细胞系;这些细胞完成了整个HCV生命周期,包括感染,复制和感染性病毒的产生。总之,我们证明了miR-122,SRBI和ApoE对于在非人非肝Vero细胞中完成整个HCV生命周期是必要和充分的。重要信息HCV是全世界慢性肝病的主要原因,因此需要有效的预防性HCV疫苗。出于安全原因,目前使用的是从肝细胞癌建立的使用HuH-7细胞的HCV细胞培养系统,不适合生产抗HCV的疫苗。为此,使用非癌源性细胞的可靠的HCV生产系统必不可少。在这项研究中,我们希望使用Vero细胞建立一种新颖的HCV细胞培养系统,该系统已广泛用于生产针对不同病毒的疫苗。我们确定了在Vero细胞中完成整个HCV生命周期所需的最小必需宿主因子,以开发新型HCV细胞培养系统。使用Vero细胞的细胞培养系统不仅可用于生产HCV疫苗,而且可用于进一步阐明各种HCV-宿主相互作用的机制。

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