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Duck Hepatitis A Virus Possesses a Distinct Type IV Internal Ribosome Entry Site Element of Picornavirus

机译:鸭甲型肝炎病毒具有微小的IV型核糖核酸病毒内部核糖体进入位点元件

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摘要

Sequence analysis of duck hepatitis virus type 1 (DHV-1) led to its classification as the only member of a new genus, Avihepatovirus, of the family Picornaviridae, and so was renamed duck hepatitis A virus (DHAV). The 5′ untranslated region (5′ UTR) plays an important role in translation initiation and RNA synthesis of the picornavirus. Here, we provide evidence that the 651-nucleotide (nt)-long 5′ UTR of DHAV genome contains an internal ribosome entry site (IRES) element that functions efficiently in vitro and within BHK cells. Comparative sequence analysis showed that the 3′ part of the DHAV 5′ UTR is similar to the porcine teschovirus 1 (PTV-1) IRES in sequence and predicted secondary structure. Further mutational analyses of the predicted domain IIId, domain IIIe, and pseudoknot structure at the 3′ end of the DHAV IRES support our predicted secondary structure. However, unlike the case for the PTV-1 IRES element, analysis of various deletion mutants demonstrated that the optimally functional DHAV IRES element with a size of approximately 420 nt is larger than that of PTV-1 and contains other peripheral domains (Id and Ie) that do not exist within the type IV IRES elements. The domain Ie, however, could be removed without significant loss of activity. Surprisingly, like the hepatitis A virus (HAV) IRES element, the activity of DHAV IRES could be eliminated by expression of enterovirus 2A protease. These findings indicate that the DHAV IRES shares common features with type IV picornavirus IRES elements, whereas it exhibits significant differences from type IV IRESs. Therefore, we propose that DHAV possesses a distinct type IV IRES element of picornavirus.
机译:鸭肝炎病毒1型(DHV-1)的序列分析导致其被分类为Picornaviridae家族的新属,仅属甲肝病毒,因此更名为鸭肝炎A病毒(DHAV)。 5'非翻译区(5'UTR)在小核糖核酸病毒的翻译起始和RNA合成中起重要作用。在这里,我们提供的证据表明,DHAV基因组的651个核苷酸(nt)长的5'UTR包含一个内部核糖体进入位点(IRES)元件,该元件在体外和BHK细胞内有效发挥作用。比较序列分析表明,DHAV 5'UTR的3'部分的序列和预测的二级结构与猪破伤风病毒1(PTV-1)IRES相似。在DHAV IRES 3'端对预测的结构域IIId,结构域IIIe和假结结构的进一步突变分析支持了我们的预测二级结构。但是,与PTV-1 IRES元件的情况不同,对各种缺失突变体的分析表明,大小约为420 nt的最佳功能DHAV IRES元件比PTV-1更大,并包含其他外围结构域(Id和Ie )在IV型IRES元素中不存在。但是,可以删除域Ie,而不会明显丢失活动。出人意料的是,像甲型肝炎病毒(IREV)的IRES元件一样,DHAV IRES的活性可以通过表达肠病毒2A蛋白酶来消除。这些发现表明,DHAV IRES与IV型小核糖核酸IRES元件具有共同的特征,而与IV型IRESs表现出显着差异。因此,我们建议DHAV具有微小RNA病毒的独特IV型IRES元素。

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