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Initiation of Translation of Picornavirus RNAs: Structure and Function of the Internal Ribosome Entry Site

Ellie Ehrenfeld,Natalya L. Teterina-2014-04-23-ASM Press eBooks
37

TL;DRAbstract

By the late 1970s, a skeleton of the translation mechanism utilized by the bulk of cellular mRNAs had been elucidated. More elegant proof of utilization of an internal ribosome entry site (IRES) on the viral RNA was provided by analysis of translation of bicistronic constructs engineered to encode two tandem protein sequences, separated by a viral 5' untranslated region (UTR). The RNA sequences that constitute an IRES extend through several hundred nucleotides and fold into complex, multidomain structures. To identify the nucleotide sequences and structures in the picornavirus 5' UTRs that contribute to IRES function, mutations were introduced into cDNAs to generate transcripts whose translation could be evaluated in vitro or in transfected cells. For the picornavirus RNAs, a relatively relaxed structure is predicted, with a long, central axis of shifting base pairs, with relatively stable stems, loops, helices, and branch points extending from the central backbone. The conserved motif

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By the late 1970s, a skeleton of the translation mechanism utilized by the bulk of cellular mRNAs had been elucidated. More elegant proof of utilization of an internal ribosome entry site (IRES) on the viral RNA was provided by analysis of translation of bicistronic constructs engineered to encode two tandem protein sequences, separated by a viral 5' untranslated region (UTR). The RNA sequences that constitute an IRES extend through several hundred nucleotides and fold into complex, multidomain structures. To identify the nucleotide sequences and structures in the picornavirus 5' UTRs that contribute to IRES function, mutations were introduced into cDNAs to generate transcripts whose translation could be evaluated in vitro or in transfected cells. For the picornavirus RNAs, a relatively relaxed structure is predicted, with a long, central axis of shifting base pairs, with relatively stable stems, loops, helices, and branch points extending from the central backbone. The conserved motif

Keywords

Internal ribosome entry sitePicornavirusTranslation (biology)RNAEukaryotic translationNucleic acid structureUntranslated regionBiology

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