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A Local Interactive Network of 3′ RNA Elements Supports Translation and Replication of Turnip Crinkle Virus

机译:3RNA元件的本地交互式网络支持萝卜皱纹病毒的翻译和复制

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摘要

The majority of the 3′ untranslated region (UTR) of Turnip crinkle virus (TCV) was previously identified as forming a highly interactive structure with a ribosome-binding tRNA-shaped structure (TSS) acting as a scaffold and undergoing a widespread conformational shift upon binding to RNA-dependent RNA polymerase (RdRp). Tertiary interactions in the region were explored by identifying two highly detrimental mutations within and adjacent to a hairpin H4 upstream of the TSS that reduce translation in vivo and cause identical structural changes in the loop of the 3′ terminal hairpin Pr. Second-site changes that compensate for defects in translation/accumulation and reverse the structural differences in the Pr loop were found in the Pr stem, as well as in a specific stem within the TSS and within the capsid protein (CP) coding region, suggesting that the second-site changes were correcting a conformational defect and not restoring specific base pairing. The RdRp-mediated conformational shift extended upstream through this CP open reading frame (ORF) region after bypassing much of an intervening, largely unstructured region, supporting a connection between 3′ elements and coding region elements. These data suggest that the Pr loop, TSS, and H4 are central elements in the regulation of translation and replication in TCV and allow for development of an RNA interactome that maps the higher-order structure of a postulated RNA domain within the 3′ region of a plus-strand RNA virus.
机译:芜菁皱纹病毒(TCV)的大多数3'非翻译区(UTR)先前已被确定为形成高度相互作用的结构,并具有核糖体结合的tRNA形结构(TSS)作为支架,并在之后发生广泛的构象转变与依赖于RNA的RNA聚合酶(RdRp)结合。通过鉴定在TSS上游的发夹H4内和附近的两个高度有害的突变来探索该区域中的三级相互作用,这两个突变会降低体内翻译并在3'末端发夹Pr的环中引起相同的结构变化。在Pr茎中以及在TSS内和衣壳蛋白(CP)编码区内的特定茎中发现了第二个位点变化,可以补偿翻译/积累缺陷并逆转Pr环的结构差异。第二位的改变是纠正构象缺陷,而不是恢复特定的碱基配对。在绕过许多中间的,很大程度上是非结构化的区域之后,RdRp介导的构象位移通过该CP开放阅读框(ORF)区域向上游延伸,从而支持3'元件与编码区域元件之间的连接。这些数据表明,Pr环,TSS和H4是TCV中翻译和复制调控的核心要素,并允许RNA相互作用组的发展,该相互作用组映射了RNA的3'区域中假定的RNA结构域的高阶结构。正链RNA病毒。

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