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Analysis of a 3 '-translation enhancer in a tombusvirus: A dynamic model for RNA-RNA interactions of mRNA termini

机译:弓形病毒中3'-翻译增强子的分析:mRNA末端RNA-RNA相互作用的动力学模型

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Tomato bushy stunt virus is a (+)-strand RNA virus that is neither 5'-capped nor 3'-polyadenylated. Translation of viral proteins is instead mediated by an RNA element, the 3'-cap-independent translational enhancer (3'CITE), which is located in its 3' untranslated region (UTR). The 3'CITE is proposed to recruit the translational machinery to the viral message, while a long-distance RNA-RNA interaction between the 3'CITE and 5' UTR is thought to deliver the 43S ribosomal subunit to the 5' end of the viral mRNA. Here we provide the first evidence that the 5' UTR and 3'CITE interact physically. Mutational analysis showed that formation of this RNA-RNA interaction in vitro correlates well with efficient translation in vivo, thus supporting its functional relevance. Other analyses of the 3'CITE confirmed an overall Y-shaped RNA secondary structure and demonstrated the importance of numerous minor structural features for efficient translation of viral mRNAs. Functional studies on the role of the 5' UTR revealed that despite the absence of a cap structure, 43S subunits load at the very 5' end and scan in a 3' direction. These results indicate that the 5'-3' RNA-RNA interaction is likely disrupted by scanning ribosomal subunits and suggest a dynamic model for the interaction of mRNA termini during active translation.
机译:番茄丛状特技病毒是一种既没有5'封闭也没有3'-聚腺苷酸化的(+)链RNA病毒。相反,病毒蛋白的翻译是由RNA元件介导的,RNA元件是3'-帽非依赖性翻译增强子(3'CITE),位于其3'非翻译区(UTR)中。提议使用3'CITE来吸引病毒信息的翻译机制,而3'CITE和5'UTR之间的长距离RNA-RNA相互作用被认为可以将43S核糖体亚基传递到病毒的5'末端。 mRNA。在这里,我们提供了5'UTR和3'CITE物理相互作用的第一个证据。突变分析表明,这种RNA-RNA相互作用的形成与体外有效翻译密切相关,从而支持其功能相关性。对3'CITE的其他分析确认了整体Y形RNA二级结构,并证明了许多次要结构特征对于有效翻译病毒mRNA的重要性。关于5'UTR的作用的功能研究表明,尽管没有帽结构,但43S亚基仍在5'末端装载并向3'方向扫描。这些结果表明,5'-3'RNA-RNA相互作用可能被核糖体亚基扫描破坏,并提示了在主动翻译过程中mRNA末端相互作用的动力学模型。

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