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The major form of hepatitis C virus alternate reading frame protein is suppressed by core protein expression

机译:核心蛋白表达抑制丙型肝炎病毒替代阅读框蛋白的主要形式

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摘要

Hepatitis C virus (HCV) is a human RNA virus encoding 10 proteins in a single open reading frame. In the +1 frame, an ‘alternate reading frame’ (ARF) overlaps with the core protein-encoding sequence and encodes the ARF protein (ARFP). Here, we investigated the molecular regulatory mechanisms of ARFP expression in HCV target cells. Chimeric HCV-luciferase reporter constructs derived from the infectious HCV prototype isolate H77 were transfected into hepatocyte-derived cell lines. Translation initiation was most efficient at the internal AUG codon at position 86/88, resulting in the synthesis of a truncated ARFP named 86/88ARFP. Interestingly, 86/88ARFP synthesis was markedly enhanced in constructs containing an inactivated core protein reading frame. This enhancement was reversed by co-expression of core protein in trans, demonstrating suppression of ARFP synthesis by HCV core protein. In conclusion, our results indicate that translation of ARFP occurs mainly by alternative internal initiation at position 86/88 and is regulated by HCV core protein expression. The suppression of ARFP translation by HCV core protein suggests that ARFP expression is inversely linked to the level of viral replication. These findings define key mechanisms regulating ARFP expression and set the stage for further studies addressing the function of ARFP within the viral life cycle.
机译:丙型肝炎病毒(HCV)是一种人类RNA病毒,在一个开放阅读框中编码10种蛋白质。在+1帧中,“替代阅读框”(ARF)与核心蛋白编码序列重叠,并编码ARF蛋白(ARFP)。在这里,我们调查了在肝炎病毒靶细胞中ARFP表达的分子调控机制。将源自感染性HCV原型分离株H77的嵌合HCV荧光素酶报告基因构建体转染到肝细胞衍生的细胞系中。翻译起始是在内部AUG密码子在86/88位置上最有效的,从而合成了一个名为86 / 88ARFP的截短的ARFP。有趣的是,在含有失活的核心蛋白阅读框的构建物中,86 / 88ARFP的合成显着增强。这种增强通过反式共表达核心蛋白而逆转,表明HCV核心蛋白抑制了ARFP合成。总之,我们的结果表明,ARFP的翻译主要通过在86/88位的内部替代起始而发生,并受HCV核心蛋白表达的调节。 HCV核心蛋白对ARFP翻译的抑制表明ARFP表达与病毒复制水平成反比。这些发现定义了调节ARFP表达的关键机制,并为进一步研究在病毒生命周期内解决ARFP功能奠定了基础。

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