首页> 美国卫生研究院文献>other >Efficient Translation of Pelargonium line pattern virus RNAs Relies on a TED-Like 3´-Translational Enhancer that Communicates with the Corresponding 5´-Region through a Long-Distance RNA-RNA Interaction
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Efficient Translation of Pelargonium line pattern virus RNAs Relies on a TED-Like 3´-Translational Enhancer that Communicates with the Corresponding 5´-Region through a Long-Distance RNA-RNA Interaction

机译:天竺葵线型病毒RNA的有效翻译依赖于像TED的3´-翻译增强子它通过长距离RNA-RNA相互作用与相应的5´-区域通信。

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摘要

Cap-independent translational enhancers (CITEs) have been identified at the 3´-terminal regions of distinct plant positive-strand RNA viruses belonging to families Tombusviridae and Luteoviridae. On the bases of their structural and/or functional requirements, at least six classes of CITEs have been defined whose distribution does not correlate with taxonomy. The so-called TED class has been relatively under-studied and its functionality only confirmed in the case of Satellite tobacco necrosis virus, a parasitic subviral agent. The 3´-untranslated region of the monopartite genome of Pelargonium line pattern virus (PLPV), the recommended type member of a tentative new genus (Pelarspovirus) in the family Tombusviridae, was predicted to contain a TED-like CITE. Similar CITEs can be anticipated in some other related viruses though none has been experimentally verified. Here, in the first place, we have performed a reassessment of the structure of the putative PLPV-TED through in silico predictions and in vitro SHAPE analysis with the full-length PLPV genome, which has indicated that the presumed TED element is larger than previously proposed. The extended conformation of the TED is strongly supported by the pattern of natural sequence variation, thus providing comparative structural evidence in support of the structural data obtained by in silico and in vitro approaches. Next, we have obtained experimental evidence demonstrating the in vivo activity of the PLPV-TED in the genomic (g) RNA, and also in the subgenomic (sg) RNA that the virus produces to express 3´-proximal genes. Besides other structural features, the results have highlighted the key role of long-distance kissing-loop interactions between the 3´-CITE and 5´-proximal hairpins for gRNA and sgRNA translation. Bioassays of CITE mutants have confirmed the importance of the identified 5´-3´ RNA communication for viral infectivity and, moreover, have underlined the strong evolutionary constraints that may operate on genome stretches with both regulatory and coding functions.
机译:已经在属于Tombusviridae和Luteoviridae家族的不同植物正链RNA病毒的3'-末端区域鉴定了不依赖帽的翻译增强子(CITE)。根据其结构和/或功能要求,至少定义了六类CITE,其分布与分类法无关。所谓的TED类研究相对较少,只有在寄生亚病毒寄生虫卫星烟草坏死病毒的情况下,才能确认其功能。天竺葵线型病毒(PLPV)的单部分基因组的3'非翻译区是Tombusviridae家族中暂定的新属(Pelarspovirus)的推荐类型成员,预计包含TED样CITE。尽管尚未通过实验验证,但在其他一些相关病毒中也可以预见到类似的CITE。在这里,首先,我们通过计算机预测和全长PLPV基因组的体外SHAPE分析,对推定的PLPV-TED的结构进行了重新评估,这表明假定的TED元素比以前大。建议。 TED的扩展构象得到自然序列变异模式的有力支持,从而提供了比较的结构证据,以支持通过计算机和体外方法获得的结构数据。接下来,我们获得了实验证据,证明PLPV-TED在基因组(g)RNA以及病毒产生的表达3'-近端基因的亚基因组(sg)RNA中的体内活性。除其他结构特征外,结果突出了3´-CITE和5´-近端发夹之间长距离接吻-环相互作用对于gRNA和sgRNA翻译的关键作用。 CITE突变体的生物测定法已经确认了已鉴定的5´-3´ RNA交流对于病毒感染性的重要性,此外,还强调了可能对具有调控和编码功能的基因组延伸起作用的强大进化限制。

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