Enzymatic Defects of the nsP2 Proteins of Semliki Forest Virus Temperature-Sensitive Mutants
- 15 March 2007
- journal article
- Published by American Society for Microbiology in Journal of Virology
- Vol. 81 (6) , 2849-2860
- https://doi.org/10.1128/jvi.02078-06
Abstract
We have analyzed the biochemical consequences of mutations that affect viral RNA synthesis in Semliki Forest virus temperature-sensitive (ts) mutants. Of the six mutations mapping in the multifunctional replicase protein nsP2, three were located in the N-terminal helicase region and three were in the C-terminal protease domain. Wild-type and mutant nsP2s were expressed, purified, and assayed for nucleotide triphosphatase (NTPase), RNA triphosphatase (RTPase), and protease activities in vitro at 24 degrees C and 35 degrees C. The protease domain mutants (ts4, ts6, and ts11) had reduced protease activity at 35 degrees C but displayed normal NTPase and RTPase. The helicase domain mutation ts1 did not have enzymatic consequences, whereas ts13a and ts9 reduced both NTPase and protease activities but in different and mutant-specific ways. The effects of these helicase domain mutants on protease function suggest interdomain interactions within nsP2. NTPase activity was not directly required for protease activity. The similarities of the NTPase and RTPase results, as well as competition experiments, suggest that these two reactions utilize the same active site. The mutations were also studied in recombinant viruses first cultivated at the permissive temperature and then shifted up to the restrictive temperature. Processing of the nonstructural polyprotein was generally retarded in cells infected with viruses carrying the ts4, ts6, ts11, and ts13a mutations, and a specific defect appeared in ts9. All mutations except ts13a were associated with a large reduction in the production of the subgenomic 26S mRNA, indicating that both protease and helicase domains influence the recognition of the subgenomic promoter during virus replication.Keywords
This publication has 80 references indexed in Scilit:
- Identification of Mutations Causing Temperature-Sensitive Defects in Semliki Forest Virus RNA SynthesisJournal of Virology, 2006
- Characterization of the cysteine protease domain of Semliki Forest virus replicase protein nsP2 by in vitro mutagenesisPublished by Wiley ,2006
- Helicases: amino acid sequence comparisons and structure-function relationshipsPublished by Elsevier ,2005
- The Functional Interaction of the Hepatitis C Virus Helicase Molecules Is Responsible for Unwinding ProcessivityJournal of Biological Chemistry, 2004
- Functional Analysis of nsP3 Phosphoprotein Mutants ofSindbisVirusJournal of Virology, 2003
- A Single Amino Acid Change in the Nuclear Localization Sequence of the nsP2 Protein Affects the Neurovirulence of Semliki Forest VirusJournal of Virology, 2002
- Phosphorylation Site Analysis of Semliki Forest Virus Nonstructural Protein 3Journal of Biological Chemistry, 2000
- RNA helicase activity of Semliki Forest virus replicase protein NSP2FEBS Letters, 1999
- Evolution and Taxonomy of Positive-Strand RNA Viruses: Implications of Comparative Analysis of Amino Acid SequencesCritical Reviews in Biochemistry and Molecular Biology, 1993
- ISOLATION AND BASIC CHARACTERIZATION OF TEMPERATURE‐SENSITIVE MUTANTS FROM SEMLIKI FOREST VIRUSActa Pathologica Microbiologica Scandinavica Section B Microbiology and Immunology, 1974