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A Small Yeast RNA Blocks Hepatitis C Virus Internal Ribosome Entry Site (HCV IRES)-Mediated Translation and Inhibits Replication of a Chimeric Poliovirus under Translational Control of the HCV IRES Element

机译:小酵母RNA阻止丙型肝炎病毒内部核糖体进入位点(HCV IRES)介导的翻译并抑制HCV IRES元素翻译控制下的嵌合脊髓灰质炎病毒的复制。

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摘要

Hepatitis C virus (HCV) infection frequently leads to chronic hepatitis and cirrhosis of the liver and has been linked to development of hepatocellular carcinoma. We previously identified a small yeast RNA (IRNA) capable of specifically inhibiting poliovirus (PV) internal ribosome entry site (IRES)-mediated translation. Here we report that IRNA specifically inhibits HCV IRES-mediated translation both in vivo and in vitro. A number of human hepatoma (Huh-7) cell lines expressing IRNA were prepared and characterized. Constitutive expression of IRNA was not detrimental to cell growth. HCV IRES-mediated cap-independent translation was markedly inhibited in cells constitutively expressing IRNA compared to control hepatoma cells. However, cap-dependent translation was not significantly affected in these cell lines. Additionally, Huh-7 cells constitutively expressing IRNA became refractory to infection by a PV-HCV chimera in which the PV IRES is replaced by the HCV IRES. In contrast, replication of a PV-encephalomyocarditis virus (EMCV) chimera containing the EMCV IRES element was not affected significantly in the IRNA-producing cell line. Finally, the binding of the La autoantigen to the HCV IRES element was specifically and efficiently competed by IRNA. These results provide a basis for development of novel drugs effective against HCV infection.
机译:丙型肝炎病毒(HCV)感染经常导致慢性肝炎和肝硬化,并与肝细胞癌的发展有关。我们先前确定了一种小酵母RNA(IRNA),能够特异性抑制脊髓灰质炎病毒(PV)内部核糖体进入位点(IRES)介导的翻译。在这里,我们报道IRNA在体内和体外均特异性抑制HCV IRES介导的翻译。制备并表征了许多表达IRNA的人肝癌(Huh-7)细胞系。 IRNA的组成型表达对细胞生长无害。与组成性肝癌细胞相比,在组成型表达IRNA的细胞中HCV IRES介导的不依赖帽的翻译受到显着抑制。但是,帽依赖性翻译在这些细胞系中没有受到显着影响。另外,组成型表达IRNA的Huh-7细胞变得难以被PV-HCV嵌合体感染,其中PV IRES被HCV IRES替代。相反,在含有IRNA的细胞系中,含有EMCV IRES元件的PV-脑心肌炎病毒(EMCV)嵌合体的复制未受到明显影响。最后,IRNA特异性有效地竞争了La自身抗原与HCV IRES元件的结合。这些结果为开发有效抗HCV感染的新药提供了基础。

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