Both Spike and Background Genes Contribute to Murine Coronavirus Neurovirulence
- 15 July 2006
- journal article
- Published by American Society for Microbiology in Journal of Virology
- Vol. 80 (14) , 6834-6843
- https://doi.org/10.1128/jvi.00432-06
Abstract
Various strains of mouse hepatitis virus (MHV) exhibit different pathogenic phenotypes. Infection with the A59 strain of MHV induces both encephalitis and hepatitis, while the highly neurovirulent JHM strain induces a fatal encephalitis with little, if any, hepatitis. The pathogenic phenotype for each strain is determined by the genetic composition of the viral genome, as well as the host immune response. Using isogenic recombinant viruses with A59 background genes differing only in the spike gene, we have previously shown that high neurovirulence is associated with the JHM spike protein, the protein responsible for attachment to the host cell receptor (J. J. Phillips, M. M. Chua, G. F. Rall, and S. R. Weiss, Virology 301:109-120, 2002). Using another set of isogenic recombinant viruses with JHM background genes expressing either the JHM or A59 spike, we have further investigated the roles of viral genes in pathogenesis. Here, we demonstrate that the high neurovirulence of JHM is associated with accelerated spread through the brain and a heightened innate immune response that is characterized by high numbers of infiltrating neutrophils and macrophages, suggesting an immunopathogenic component to neurovirulence. While expression of the JHM spike is sufficient to confer a neurovirulent phenotype, as well as increased macrophage infiltration, background genes contribute to virulence as well, at least in part, by dictating the extent of the T-cell immune response.Keywords
This publication has 57 references indexed in Scilit:
- Contributions of the Viral Genetic Background and a Single Amino Acid Substitution in an Immunodominant CD8+T-Cell Epitope to Murine Coronavirus NeurovirulenceJournal of Virology, 2005
- Receptor-Independent Spread of a Highly Neurotropic Murine Coronavirus JHMV Strain from Initially Infected Microglial Cells in Mixed Neural CulturesJournal of Virology, 2005
- Expression of the Mouse Hepatitis Virus Receptor by Central Nervous System MicrogliaJournal of Virology, 2004
- Receptor-Dependent Coronavirus Infection of Dendritic CellsJournal of Virology, 2004
- Effects of an Epitope-Specific CD8+T-Cell Response on Murine Coronavirus Central Nervous System Disease: Protection from Virus Replication and Antigen Spread and Selection of Epitope Escape MutantsJournal of Virology, 2004
- Murine Coronavirus-Induced Hepatitis: JHM Genetic Background Eliminates A59 Spike-Determined HepatotropismJournal of Virology, 2003
- The N-Terminal Domain of the Murine Coronavirus Spike Glycoprotein Determines the CEACAM1 Receptor Specificity of the Virus StrainJournal of Virology, 2003
- Conformational Changes in the Spike Glycoprotein of Murine Coronavirus Are Induced at 37°C either by Soluble Murine CEACAM1 Receptors or by pH 8Journal of Virology, 2003
- STAT1 and STAT3 α/β splice form activation predicts host responses in mouse hepatitis virus type 3 infectionJournal of Medical Virology, 2003
- An Eosinophil-Dependent Mechanism for the Antitumor Effect of Interleukin-4Science, 1992