Literature DB >> 12368304

Poliovirus internal ribosome entry segment structure alterations that specifically affect function in neuronal cells: molecular genetic analysis.

Cécile E Malnou1, Tuija A A Pöyry, Richard J Jackson, Katherine M Kean.   

Abstract

Translation of poliovirus RNA is driven by an internal ribosome entry segment (IRES) present in the 5' noncoding region of the genomic RNA. This IRES is structured into several domains, including domain V, which contains a large lateral bulge-loop whose predicted secondary structure is unclear. The primary sequence of this bulge-loop is strongly conserved within enteroviruses and rhinoviruses: it encompasses two GNAA motifs which could participate in intrabulge base pairing or (in one case) could be presented as a GNRA tetraloop. We have begun to address the question of the significance of the sequence conservation observed among enterovirus reference strains and field isolates by using a comprehensive site-directed mutagenesis program targeted to these two GNAA motifs. Mutants were analyzed functionally in terms of (i) viability and growth kinetics in both HeLa and neuronal cell lines, (ii) structural analyses by biochemical probing of the RNA, and (iii) translation initiation efficiencies in vitro in rabbit reticulocyte lysates supplemented with HeLa or neuronal cell extracts. Phenotypic analyses showed that only viruses with both GNAA motifs destroyed were significantly affected in their growth capacities, which correlated with in vitro translation defects. The phenotypic defects were strongly exacerbated in neuronal cells, where a temperature-sensitive phenotype could be revealed at between 37 and 39.5 degrees C. Biochemical probing of mutated domain V, compared to the wild type, demonstrated that such mutations lead to significant structural perturbations. Interestingly, revertant viruses possessed compensatory mutations which were distant from the primary mutations in terms of sequence and secondary structure, suggesting that intradomain tertiary interactions could exist within domain V of the IRES.

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Year:  2002        PMID: 12368304      PMCID: PMC136602          DOI: 10.1128/jvi.76.21.10617-10626.2002

Source DB:  PubMed          Journal:  J Virol        ISSN: 0022-538X            Impact factor:   5.103


  37 in total

1.  Evolution of a common structural core in the internal ribosome entry sites of picornavirus.

Authors:  S Y Le; J V Maizel
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2.  Hepatitis C virus IRES RNA-induced changes in the conformation of the 40s ribosomal subunit.

Authors:  C M Spahn; J S Kieft; R A Grassucci; P A Penczek; K Zhou; J A Doudna; J Frank
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Review 3.  Internal initiation of translation of picornavirus RNAs.

Authors:  R J Jackson; S L Hunt; C L Gibbs; A Kaminski
Journal:  Mol Biol Rep       Date:  1994-05       Impact factor: 2.316

4.  Attenuation stem-loop lesions in the 5' noncoding region of poliovirus RNA: neuronal cell-specific translation defects.

Authors:  A A Haller; S R Stewart; B L Semler
Journal:  J Virol       Date:  1996-03       Impact factor: 5.103

5.  The hepatitis C virus internal ribosome entry site adopts an ion-dependent tertiary fold.

Authors:  J S Kieft; K Zhou; R Jubin; M G Murray; J Y Lau; J A Doudna
Journal:  J Mol Biol       Date:  1999-09-24       Impact factor: 5.469

6.  Pyrimidine-rich region mutations compensate for a stem-loop V lesion in the 5' noncoding region of poliovirus genomic RNA.

Authors:  S R Stewart; B L Semler
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Review 7.  Molecular aspects of poliovirus biology with a special focus on the interactions with nerve cells.

Authors:  B Blondel; G Duncan; T Couderc; F Delpeyroux; N Pavio; F Colbère-Garapin
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8.  Poliovirus infection enhances the formation of two ribonucleoprotein complexes at the 3' end of viral negative-strand RNA.

Authors:  H H Roehl; B L Semler
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9.  Sequences within the poliovirus internal ribosome entry segment control viral RNA synthesis.

Authors:  A M Borman; F G Deliat; K M Kean
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Authors:  B Marczinke; R Fisher; M Vidakovic; A J Bloys; I Brierley
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7.  Natural occurrence and characterization of two internal ribosome entry site elements in a novel virus, canine picodicistrovirus, in the picornavirus-like superfamily.

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