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Idiosyncratic behaviour of tRNA-like structures in translation of plant viral RNA genomes

机译:植物病毒RNA基因组翻译中tRNA样结构的特异行为

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Tobacco mosaic virus (TMV) and Nemesia ring necrosis virus (NeRNV) belong to the Tobamoviridae and Tymoviridae families, respectively. Although their RNAs present different 5'-untranslated regions and different family-specific genomic organizations, they share common 3'-ends organized into three consecutive pseudoknot structures followed by a histidylatable tRNA-like structure (TLS). We investigate here whether the histidine residue becomes incorporated into viral proteins and if the TLSs of TMV and NeRNV play a role in viral translation. Our results indicate that, regardless of the genomic context, the histidine moiety does not become incorporated in proteins via ribosomal translation, and that disruption of the TLS in either viral RNA does not perturb the viral translation patterns. In the light of the present data and of previous results on tymoviral TLSVal and bromoviral TLSTyr showing differential effects on translation, we suggest that the key role for the TLS in promoting translation initiation appears to be dictated by the TLS architecture and identity. (c) 2005 Elsevier Ltd. All rights reserved.
机译:烟草花叶病毒(TMV)和尼美西亚环坏死病毒(NeRNV)分别属于Tobamoviridae和Tymoviridae家族。尽管它们的RNA呈现不同的5'非翻译区和不同的家族特异性基因组组织,但它们共享共同的3'端,这些3'端组织成三个连续的假结结构,后跟可组织化的tRNA样结构(TLS)。我们在这里研究组氨酸残基是否被纳入病毒蛋白中,以及TMV和NeRNV的TLS在病毒翻译中是否起作用。我们的结果表明,无论基因组背景如何,组氨酸部分均不会通过核糖体翻译掺入蛋白质中,并且任一病毒RNA中TLS的破坏均不会干扰病毒翻译模式。根据当前的数据和以前的关于tymoviral TLSVal和bromoviral TLSTyr的结果显示对翻译的不同影响,我们建议TLS在促进翻译起始中的关键作用似乎由TLS体系结构和身份决定。 (c)2005 Elsevier Ltd.保留所有权利。

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