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Published on: February 23, 2014
Genetic determinants of mouse hepatitis virus strain 1 pneumovirulence
Julian L Leibowitz1, Rajiv Srinivasa, Shawn T Williamson
1Department of Microbial and Molecular Pathogenesis Texas A&M University System-HSC, College of Medicine, 407 Reynolds Medical Building, 1114 TAMU, College Station, TX 77843-1114, USA. jleibowitz@tamu.edu
Abstract:
We report here investigation into the genetic basis of mouse hepatitis virus strain 1 (MHV-1) pneumovirulence. Sequencing of the 3' one-third of the MHV-1 genome demonstrated that the genetic organization of MHV-1 was similar to that of other strains of MHV. The hemagglutinin esterase (HE) protein was truncated, and reverse transcription-PCR (RT-PCR) studies confirmed previous work that suggested that the MHV-1 HE is a pseudogene. Targeted recombination was used to select chimeric viruses containing either the MHV-1 S gene or genes encoding all of the MHV-1 structural proteins, on an MHV-A59 background. Challenge studies in mice demonstrated that expression of the MHV-1 S gene within the MHV-A59 background (rA59/S(MHV-1)) increased the pneumovirulence of MHV-A59, and mice infected with this recombinant virus developed pulmonary lesions that were similar to those observed with MHV-1, although rA59/S(MHV-1) was significantly less virulent. Chimeras containing all of the MHV-1 structural genes on an MHV-A59 background were able to reproduce the severe acute respiratory syndrome (SARS)-like pathology observed with MHV-1 and reproducibly increased pneumovirulence relative to rA59/S(MHV-1), but were still much less virulent than MHV-1. These data suggest that important determinants of pneumopathogenicity are contained within the 3' one-third of the MHV-1 genome, but additional important virulence factors must be encoded in the genome upstream of the S gene. The severity of the pulmonary lesions observed correlates better with elevated levels of inflammatory cytokines than with viral replication in the lungs, suggesting that pulmonary disease has an important immunological component.
Insights
Investigating mouse hepatitis virus strain 1 (MHV-1) pneumovirulence revealed that the 3' one-third of its genome contains key determinants of lung disease. Additional virulence factors are located upstream of the S gene, influencing disease severity.
Area of Science:
- Virology
- Immunology
- Genetics
Background:
- Mouse hepatitis virus strain 1 (MHV-1) causes significant pneumovirulence.
- Understanding the genetic basis of MHV-1's lung pathogenicity is crucial for disease control.
Purpose of the Study:
- To investigate the genetic determinants of MHV-1's pneumovirulence.
- To identify specific viral genes responsible for lung disease severity.
Main Methods:
- Sequencing of the 3' genomic region of MHV-1.
- Creation of chimeric MHV viruses using targeted recombination.
- Infection studies in mice to assess pneumovirulence and pathology.
Main Results:
- The MHV-1 hemagglutinin esterase (HE) protein is a pseudogene.
- Recombinant viruses expressing the MHV-1 S gene or all MHV-1 structural genes showed increased pneumovirulence.
- Chimeric viruses partially reproduced MHV-1's severe acute respiratory syndrome (SARS)-like pathology but were less virulent.
- Pulmonary lesions correlated better with inflammatory cytokine levels than viral replication.
Conclusions:
- Determinants of MHV-1 pneumopathogenicity are located in the 3' genomic region, including the S gene.
- Additional virulence factors are encoded upstream of the S gene.
- Pulmonary disease severity is influenced by both viral factors and the host's immune response, particularly inflammatory cytokines.
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