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首页> 外文期刊>Virology Journal >The internal initiation of translation in bovine viral diarrhea virus RNA depends on the presence of an RNA pseudoknot upstream of the initiation codon
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The internal initiation of translation in bovine viral diarrhea virus RNA depends on the presence of an RNA pseudoknot upstream of the initiation codon

机译:牛病毒性腹泻病毒RNA的内部翻译起始取决于起始密码子上游是否存在RNA假结。

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Background Bovine viral diarrhea virus (BVDV) is the prototype representative of the pestivirus genus in the Flaviviridae family. It has been shown that the initiation of translation of BVDV RNA occurs by an internal ribosome entry mechanism mediated by the 5' untranslated region of the viral RNA [ 1 ]. The 5' and 3' boundaries of the IRES of the cytopathic BVDV NADL have been mapped and it has been suggested that the IRES extends into the coding of the BVDV polyprotein [ 2 ]. A putative pseudoknot structure has been recognized in the BVDV 5'UTR in close proximity to the AUG start codon. A pseudoknot structure is characteristic for flavivirus IRESes and in the case of the closely related classical swine fever virus (CSFV) and the more distantly related Hepatitis C virus (HCV) pseudoknot function in translation has been demonstrated. Results To characterize the BVDV IRESes in detail, we studied the BVDV translational initiation by transfection of dicistronic expression plasmids into mammalian cells. A region coding for the amino terminus of the BVDV SD-1 polyprotein contributes considerably to efficient initiation of translation. The translation efficiency mediated by the IRES of BVDV strains NADL and SD-1 approximates the poliovirus type I IRES directed translation in BHK cells. Compared to the poliovirus IRES increased expression levels are mediated by the BVDV IRES of strain SD-1 in murine cell lines, while lower levels are observed in human cell lines. Site directed mutagenesis revealed that a RNA pseudoknot upstream of the initiator AUG is an important structural element for IRES function. Mutants with impaired ability to base pair in stem I or II lost their translational activity. In mutants with repaired base pairing either in stem 1 or in stem 2 full translational activity was restored. Thus, the BVDV IRES translation is dependent on the pseudoknot integrity. These features of the pestivirus IRES are reminiscent of those of the classical swine fever virus, a pestivirus, and the hepatitis C viruses, another genus of the Flaviviridae. Conclusion The IRES of the non-cytopathic BVDV SD-1 strain displays features known from other pestivirus IRESes. The predicted pseudoknot in the 5'UTR of BVDV SD-1 virus represents an important structural element in BVDV translation.
机译:背景技术牛病毒性腹泻病毒(BVDV)是黄病毒科中瘟病毒属的原型代表。已经显示,BVDV RNA的翻译起始是由病毒RNA的5'非翻译区介导的内部核糖体进入机制发生的[1]。已经绘制出了细胞病变性BVDV NADL的IRES的5'和3'边界,这表明IRES扩展到BVDV多蛋白的编码[2]。在BVDV 5'UTR中,在接近AUG起始密码子的位置已识别出假性假结结构。假结结构是黄病毒IRESes的特征,在紧密相关的经典猪瘟病毒(CSFV)和更远相关的丙型肝炎病毒(HCV)中,假结功能已在翻译中得到证明。结果为了详细表征BVDV IRES,我们通过将双顺反子表达质粒转染到哺乳动物细胞中研究了BVDV的翻译起始。编码BVDV SD-1多蛋白氨基末端的区域对翻译的有效启动有很大贡献。由BVDV菌株NADL和SD-1的IRES介导的翻译效率接近BHK细胞中I型脊髓灰质炎病毒IRES指导的翻译。与脊髓灰质炎病毒IRES相比,在鼠细胞系中SD-1株的BVDV IRES介导了表达水平的提高,而在人细胞系中观察到了较低的水平。定点诱变显示,启动子AUG上游的RNA假结是IRES功能的重要结构元件。在茎I或茎II中碱基配对能力受损的突变体失去了其翻译活性。在茎1或茎2中碱基配对修复的突变体中,完全的翻译活性得以恢复。因此,BVDV IRES转换取决于伪结完整性。瘟病毒IRES的这些特征让人联想到经典猪瘟病毒瘟病毒和黄病毒科的另一属丙型肝炎病毒。结论非细胞病性BVDV SD-1株的IRES具有其他瘟病毒IRES已知的特征。 BVDV SD-1病毒5'UTR中预测的假结代表BVDV翻译中的重要结构元件。

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