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Murine central nervous system infection by a viral temperature-sensitive mutant: a subacute disease leading to
Abstract:
Temperature-sensitive (ts) mutants of viruses may represent an important mechanism for viral persistence. Ts mutants of different complementation groups of vesicular stomatitus virus (VSV) have shown various disease patterns in infected mice which were at variance with the clinical and pathologic features of wild-type virus infection. To investigate whether neurovirulence of different ts mutants was dependent on the individual mutant or on the biochemical defect(s) common to all members of a complementation group, we infected mice with ts G32 VSV, a mutant of the same complementation group III as the previously described ts G31 VSV. Pathologic changes in infected mice were sharply different from those produced by ts G31 VSV and actually similar to those produced by ts G41 VSV, a member of Complementation Group IV, also previously described. These results suggest that the biologic behavior of ts mutants is dependent on the individual characteristics of each mutant. The most important alterations by ts G32 VSV were in the white matter of brain and spinal cord, where extensive inflammatory demyelination was observed. Lack of inflammation and demyelination in similarly infected nude mice would suggest that, in this infection, demyelination is produced by the host immune response rather than by direct viral myelinolytic activity. Such findings are similar to those we described in other viral infections and support the hypothesis of a common host-mediated pathway leading to demyelination in a variety of unrelated viral infections. These conclusions may have relevance to human demyelinating diseases.
Insights
Temperature-sensitive vesicular stomatitis virus (VSV) mutants show varied disease patterns. Individual mutant characteristics, not complementation groups, dictate neurovirulence and demyelination, suggesting a common host-mediated pathway in viral infections.
Area of Science:
- Virology
- Neuroimmunology
- Pathology
Background:
- Temperature-sensitive (ts) mutants of viruses can persist in hosts.
- Vesicular stomatitis virus (VSV) ts mutants exhibit diverse disease patterns in mice, differing from wild-type infections.
- Previous studies showed varied neurovirulence among different VSV complementation groups.
Purpose of the Study:
- To determine if neurovirulence of VSV ts mutants depends on the specific mutant or its complementation group.
- To investigate the pathological mechanisms underlying demyelination caused by VSV ts mutants.
Main Methods:
- Infection of mice with ts G32 VSV, a mutant from complementation group III.
- Comparison of pathological changes with ts G31 VSV (group III) and ts G41 VSV (group IV).
- Infection of nude mice to assess the role of the host immune response in demyelination.
Main Results:
- Ts G32 VSV induced pathological changes distinct from ts G31 VSV but similar to ts G41 VSV.
- Extensive inflammatory demyelination was observed in the brain and spinal cord white matter after ts G32 VSV infection.
- Nude mice infected with ts G32 VSV showed no inflammation or demyelination, indicating a host immune response mediates the process.
Conclusions:
- The biological behavior and neurovirulence of VSV ts mutants are determined by individual mutant characteristics, not solely by complementation group.
- Demyelination in this VSV infection model is mediated by the host immune response, not direct viral action on myelin.
- A common host-mediated pathway may underlie demyelination in various viral infections, with implications for human demyelinating diseases.