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利用三顺反子全长病毒复制子和瞬时小鼠模型,通过小分子干扰RNA抑制丙型肝炎病毒基因表达。

Inhibition of hepatitis C virus gene expression by small interfering RNAs using a tri-cistronic full-length viral replicon and a transient mouse model.

作者信息

Kim Meehyein, Shin Duckhyang, Kim Soo In, Park Mahnhoon

机构信息

Immunology and Virology group, Mogam Biotechnology Research Institute, 341 Pojung-ri, Guseong-eup, Yongin-city, Kyonggi-do 449-913, South Korea.

出版信息

Virus Res. 2006 Dec;122(1-2):1-10. doi: 10.1016/j.virusres.2006.05.003. Epub 2006 Sep 15.

DOI:10.1016/j.virusres.2006.05.003
PMID:16979254
Abstract

HCV is an ideal target for siRNA as its genome, a single-stranded RNA, is translated into a single viral polyprotein and replicated into negative-stranded RNA. In the present study, we monitored the effects of 36 different small interfering RNAs (siRNAs) transcribed from a plasmid-derived expression system on the luciferase activities expressed from a full-length HCV replicon, to identify potent siRNA target sites. Delivery of nine selected siRNA expression vectors into human hepatoma cells (Huh7) carrying a genomic HCV replicon resulted in a significant reduction in viral protein and RNA levels. Moreover, synthetic siRNAs directed to target sites (core, NS3, NS4A and NS4B coding regions) in the HCV genome efficiently suppressed viral replication in a dose-dependent manner. A transient mouse model system expressing viral structural proteins in the liver was constructed using the hydrodynamic transfection method to confirm in vivo anti-HCV activity of the selected siRNAs. A 21-nucleotide siRNA, which can hybridize to the HCV core coding region with a single G-U base pair, suppressed weakly transgene expression in mice. However, this anti-viral effect was enhanced upon substitution with a 27-mer duplex RNA. Our results will provide useful information about designing potent siRNAs against variable target sites.

摘要

丙型肝炎病毒(HCV)是小干扰RNA(siRNA)的理想靶点,因为其基因组为单链RNA,可被翻译为单一病毒多聚蛋白,并复制为负链RNA。在本研究中,我们监测了从质粒表达系统转录的36种不同小干扰RNA(siRNAs)对全长HCV复制子表达的荧光素酶活性的影响,以确定有效的siRNA靶位点。将九个选定的siRNA表达载体导入携带基因组HCV复制子的人肝癌细胞(Huh7)中,导致病毒蛋白和RNA水平显著降低。此外,针对HCV基因组中靶位点(核心、NS3、NS4A和NS4B编码区)的合成siRNAs以剂量依赖方式有效抑制病毒复制。利用流体动力学转染方法构建了在肝脏中表达病毒结构蛋白的瞬时小鼠模型系统,以确认所选siRNAs的体内抗HCV活性。一种能与HCV核心编码区以单个G-U碱基对杂交的21核苷酸siRNA,在小鼠中对转基因表达的抑制作用较弱。然而,用27聚体双链RNA替代后,这种抗病毒效果增强。我们的结果将为设计针对可变靶位点的有效siRNAs提供有用信息。

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