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Manipulation of both virus- and cell-specific factors is required for robust transient replication of a hepatitis C virus genotype 3a sub-genomic replicon

机译:对于丙型肝炎病毒基因型3a亚基因组复制子的强有力的瞬时复制,需要操纵病毒和细胞特异性因子。

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摘要

Hepatitis C virus (HCV) genotype (GT) 3 is the second most prevalent of the seven HCV genotypes and exhibits the greatest resistance to the highly potent, direct-acting antivirals (DAAs) that are currently in use. Previously a stable cell line harbouring the S52 GT3 subgenomic replicon (SGR) was established, but this SGR was unable to robustly replicate transiently. As transient SGRs are a critical tool in the development of DAAs, and the study of viral resistance, we sought to establish a transient SGR system based on S52. Next generation sequencing was used to identify putative culture-adaptive substitutions that had arisen during long term selection of the S52 SGR. A subset of these substitutions were built back into the S52 SGR in the context of a CpG/UpA-low luciferase reporter, with a single point mutation in NS4A conferring the greatest replication capability upon S52. Modification of the innate immune-sensing pathways of Huh7.5 hepatoma cells by expression of the parainfluenza virus type 5 V protein and SEC14L2 resulted in a further enhancement of S52 replication. Furthermore, this transiently-replicating SGR showed genotype-specific differences in sensitivity to two clinically-relevant NS5A DAAs. In conclusion, we report that a single substitution in NS4A, coupled with host cell modifications, enabled robust levels of transient replication by the GT3 S52 SGR. This system will have beneficial uses in both basic research into the unique aspects of GT3 biology and drug discovery.
机译:丙型肝炎病毒(HCV)基因型(GT)3是七个HCV基因型中第二大流行的基因,对目前使用的强效直接作用抗病毒剂(DAA)表现出最大的抵抗力。以前,已经建立了带有S52 GT3亚基因组复制子(SGR)的稳定细胞系,但是该SGR无法瞬时复制。由于瞬时SGR是开发DAA和研究病毒抗性的关键工具,我们寻求建立基于S52的瞬时SGR系统。下一代测序用于鉴定在S52 SGR的长期选择过程中出现的假定的培养适应性替代。这些取代的子集在CpG / UpA低荧光素酶报道基因的背景下被重新构建到S52 SGR中,其中NS4A中的单点突变赋予S52最大的复制能力。通过表达副流感病毒5 V型蛋白和SEC14L2修饰Huh7.5肝癌细胞的先天免疫传感途径导致S52复制的进一步增强。此外,这种瞬时复制的SGR对两种与临床相关的NS5A DAA的敏感性显示出基因型特异性差异。总之,我们报道NS4A中的单个取代加上宿主细胞修饰,使得GT3 S52 SGR具有稳定的瞬时复制水平。该系统将在GT3生物学独特方面的基础研究和药物发现中都有有益的用途。

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