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A second functional RNA domain in the 5′ UTR of the Tomato bushy stunt virus genome: Intra- and interdomain interactions mediate viral RNA replication

机译:番茄丛状特技病毒基因组5'UTR中的第二个功能性RNA结构域:域内和域间相互作用介导病毒RNA复制

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摘要

The 5′ untranslated regions (UTRs) of (+)-strand RNA viruses play a variety of roles in the reproductive cycles of these infectious agents. Tomato bushy stunt virus (TBSV) belongs to this class of RNA virus and is the prototype member of the genus Tombusvirus. Previous studies have demonstrated that a T-shaped domain (TSD) forms in the 5′ half of the TBSV 5′ UTR and that it plays a central role in viral RNA replication. Here we have extended our structure–function analysis to the 3′ half of the 5′ UTR. Investigation of this region in the context of a model viral replicon (i.e., a TBSV-derived defective interfering [DI] RNA) revealed that this segment contains numerous functionally relevant structural features. In vitro solution structure probing along with comparative and computer-aided RNA secondary structure analyses predicted the presence of a simple stem loop (SL5) followed by a more complex downstream domain (DSD). Both structures were found to be essential for efficient DI RNA accumulation when tested in a plant protoplast system. For SL5, maintenance of the base of its stem was the principal feature required for robust in vivo accumulation. In the DSD, both helical and unpaired regions containing conserved sequences were necessary for efficient DI RNA accumulation. Additionally, optimal DI RNA accumulation required a TSD–DSD interaction mediated by a pseudoknot. Modifications that reduced accumulation did not appreciably affect DI RNA stability in vivo, indicating that the DSD and SL5 act to facilitate viral RNA replication.
机译:(+)链RNA病毒的5'非翻译区(UTR)在这些传染原的繁殖周期中发挥多种作用。番茄丛状特技病毒(TBSV)属于此类RNA病毒,并且是Tombusvirus属的原型成员。先前的研究表明,T形结构域(TSD)在TBSV 5'UTR的5'一半中形成,并且在病毒RNA复制中起着核心作用。在这里,我们将结构-功能分析扩展到了5'UTR的3'一半。在模型病毒复制子(即TBSV衍生的缺陷干扰[DI] RNA)的背景下对该区域的研究表明,该片段包含许多功能相关的结构特征。体外溶液结构探测以及比较和计算机辅助的RNA二级结构分析预测,存在简单的茎环(SL5),然后是更复杂的下游域(DSD)。在植物原生质体系统中进行测试时,发现这两种结构对于有效的DI RNA积累都是必不可少的。对于SL5,维持其茎基部是强劲的体内蓄积所需的主要特征。在DSD中,包含保守序列的螺旋区和非配对区对于有效的DI RNA积累都是必需的。此外,最佳的DI RNA积累需要假结介导的TSD-DSD相互作用。减少积累的修饰不会明显影响体内DI RNA的稳定性,表明DSD和SL5起到促进病毒RNA复制的作用。

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