Sindbis virus RNA polymerase is degraded by the N-end rule pathway.
- 15 October 1991
- journal article
- Published by Proceedings of the National Academy of Sciences in Proceedings of the National Academy of Sciences
- Vol. 88 (20) , 8967-8971
- https://doi.org/10.1073/pnas.88.20.8967
Abstract
Upon infection of animal cells by Sindbis virus, four nonstructural (ns) proteins, termed nsP1-4 in order from 5' to 3' in the genome, are produced by posttranslational cleavage of a polyprotein. nsP4 is believed to function as the viral RNA polymerase and is short-lived in infected cells. We show here that nsP4 produced in reticulocyte lysates is degraded by the N-end rule pathway, one ubiquitin-dependent proteolytic pathway. When the N-terminal residue of nsP4 is changed by mutagenesis, the metabolic stabilities of the mutant nsP4s follow the N-end rule, in that the half-life of nsP4 bearing different N-terminal residues decreases in the order Met greater than Ala greater than Tyr greater than or equal to Phe greater than Agr. Addition of dipeptides Tyr-Ala, Trp-Ala, or Phe-Ala to the translation mixture inhibits degradation of Tyr-nsP4 and Phe-nsP4, but not of Arg-nsP4. Conversely, dipeptides His-Ala, Arg-Ala, and Lys-Ala inhibit the degradation of Arg-nsP4 but not of Tyr-nsP4 or Phe-nsP4. We found that there is no lysine in the first 43 residues of nsP4 that is required for its degradation, indicating that a more distal lysine functions as the ubiquitin acceptor. Strict control of nsP4 concentration appears to be an important aspect of the virus life cycle, since the concentration of nsP4 in infected cells is regulated at three levels: translation of nsP4 requires read-through of an opal termination codon such that it is underproduced; differential processing by the virus-encoded proteinase results in temporal regulation of nsP4; and nsP4 itself is a short-lived protein degraded by the ubiquitin-dependent N-end rule pathway.Keywords
This publication has 28 references indexed in Scilit:
- Infectious RNA transcripts from ross river virus cDNA clones and the construction and characterization of defined chimeras with sindbis virusPublished by Elsevier ,2004
- Solubilization and immunoprecipitation of alphavirus replication complexes.1991
- Cyclin is degraded by the ubiquitin pathwayNature, 1991
- Degradation of nuclear oncoproteins by the ubiquitin system in vitro.Proceedings of the National Academy of Sciences, 1991
- Cis-trans recognition and subunit-specific degradation of short-lived proteinsNature, 1990
- RNA pseudoknots: Translational frameshifting and readthrough on viral RNAsVirus Genes, 1990
- Functional analysis of the a complementation group mutants of sindbis HR virusVirology, 1985
- Complete nucleotide sequence of the genomic RNA of Sindbis virusVirology, 1984
- Primary structural comparison of RNA-dependent polymerases from plant, animal and bacterial virusesNucleic Acids Research, 1984
- Sequence coding for the alphavirus nonstructural proteins is interrupted by an opal termination codon.Proceedings of the National Academy of Sciences, 1983