Tandem mengovirus 5' pseudoknots are linked to viral RNA synthesis, not poly(C)-mediated virulence
- 1 November 1996
- journal article
- Published by American Society for Microbiology in Journal of Virology
- Vol. 70 (11) , 8182-6
- https://doi.org/10.1128/jvi.70.11.8182-8186.1996
Abstract
The RNA genomes from the cardioviruses, hepatoviruses, and aphthoviruses encode two to five tandem pseudoknots within their 5' untranslated regions. These pseudoknots lie adjacent to a pyrimidine-rich sequence, which in cardio- and aphthoviruses takes the form of a homopolymeric poly(C) tract. Seven deletion mutations within mengovirus pseudoknots PK(B) and PK(C) were created and characterized. tested in tissue culture, mengovirus genomes with alterations in PK(C) were viable but had small plaque phenotypes. Larger plaque revertants were isolated and partially characterized, and each proved to be a second-site pseudorevertant with (unmapped) changes elsewhere in the genome. The infectious PK(C) mutant viruses were highly lethal to mice, and deletions in this motif did not affect mengovirus virulence in the same manner as deletions in the adjacent poly(C) tract. In contrast, deletions in PK(B), or deletions which spanned PK(B) + PK(C), produced nonviable genomes. Cell-free translations directed by any of the altered PK sequences gave normal polyprotein amounts relative to wild-type mengovirus. But viral RNA accumulation during HeLa cell infection was dramatically impaired, even with the least disruptive of the PK(C) changes, suggesting the pseudoknots play an essential though undefined role in RNA synthesis and moreover that an intact PK(B) structure is critical to this function.Keywords
This publication has 20 references indexed in Scilit:
- Protection of non-murine mammals against encephalomyocarditis virus using a genetically engineered Mengo virusVaccine, 1996
- Cardioviral poly(C) tracts and viral pathogenesisPublished by Springer Nature ,1994
- Structural and functional aspects of RNA pseudoknotsBiochemistry, 1992
- Modifications of the 5' untranslated region of foot-and-mouth disease virus after prolonged persistence in cell cultureVirus Research, 1992
- A functional ribonucleoprotein complex forms around the 5′ end of poliovirus RNACell, 1990
- Attenuation of Mengo virus through genetic engineering of the 5′ noncoding poly(C) tractNature, 1990
- Potential secondary and tertiary structure in the genomic RNA of foot and mouth disease virusNucleic Acids Research, 1987
- Primary structure and gene organization of human hepatitis A virus.Proceedings of the National Academy of Sciences, 1985
- The primary and secondary structure of the 5'-end region of encephalomyocarditis virus RNA a novel approach to sequencing long RNA moleculesGene, 1983
- POLIOVIRUS-INDUCED RNA POLYMERASE AND THE EFFECTS OF VIRUS-SPECIFIC INHIBITORS ON ITS PRODUCTIONProceedings of the National Academy of Sciences, 1963