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Glycoprotein gp50-negative pseudorabies virus: a novel approach toward a nonspreading live herpesvirus vaccine
S Heffner1, F Kovács, B G Klupp
1Federal Research Centre for Virus Diseases of Animals, Tübingen, Germany.
Abstract:
Essential herpesvirus glycoproteins are involved in membrane fusion processes during infection, e.g., viral penetration and direct cell-to-cell transmission. We previously showed that the gD-homologous glycoprotein gp50 of pseudorabies virus (PrV) is essential for virus entry into target cells but proved to be dispensable for direct viral cell-to-cell spread in cell culture (I. Rauh and T. C. Mettenleiter, J. Virol. 65:5348-5456, 1991). For gp50-negative (gp50-) viruses, after phenotypic complementation necessary for primary infection, the only means of viral spread is by way of direct cell-to-cell transmission. In contrast, virus mutants lacking the essential gB-homologous glycoprotein gII after phenotypic complementation are only able to infect primary target cells and are blocked in further viral spread. To analyze how these in vitro phenotypes translate into virus replication in the animal, mice were infected intranasally with gp50- or gII- PrV mutants after prior phenotypic complementation by propagation on cell lines providing the essential glycoprotein in trans. Our results show that whereas the gII- mutants did not cause disease or any symptoms, gp50- mutants derived from two different PrV strains were fully virulent, with animals exhibiting severe symptoms ultimately leading to death. However, free infectious virus could not be recovered from either gp50- or gII- PrV-infected animals. We conclude that direct cell-to-cell transmission as the only means of viral spread of the gp50- mutants is sufficient for a full virulent phenotype in mice. After infection of pigs with phenotypically complemented gp50- PrV, only mild symptoms were observed, whereas the gII- mutant was totally avirulent. In both cases, shedding of infectious virus did not occur, in contrast to results with animals infected by gX- PrV that showed severe signs of disease and extensive virus shedding. After challenge infection with the highly virulent NIA-3 strain, the previously gII- PrV-infected animals exhibited severe symptoms, whereas the gp50- PrV-infected pigs showed a significant level of protection. In conclusion, vaccination with a PrV mutant lacking glycoprotein gp50, which is unable to spread between animals because of a lack of formation of free infectious virions, can confer on pigs protection against challenge infection. These results provide the basis for the development of new, nonspreading live herpesvirus vaccines based on gp50- PrV mutants.
Insights
Pseudorabies virus (PrV) mutants lacking essential glycoprotein gp50 are virulent in mice but do not spread between animals. Pigs vaccinated with gp50- PrV mutants are protected against virulent PrV challenge, indicating potential for nonspreading herpesvirus vaccines.
Area of Science:
- Virology
- Immunology
- Veterinary Medicine
Background:
- Essential herpesvirus glycoproteins mediate membrane fusion for viral infection and spread.
- Pseudorabies virus (PrV) glycoprotein gp50 is crucial for viral entry but not cell-to-cell spread in vitro.
- Mutants lacking glycoprotein gII are blocked in viral spread after initial infection.
Purpose of the Study:
- To investigate the in vivo pathogenicity and transmission of PrV mutants lacking essential glycoproteins gp50 or gII.
- To evaluate the potential of gp50-deficient PrV mutants as live, nonspreading vaccines.
Main Methods:
- Phenotypic complementation of PrV mutants (gp50- or gII-) for in vivo infection.
- Intranasal infection of mice and pigs with complemented PrV mutants.
- Challenge infection of pigs with virulent PrV strain (NIA-3) to assess vaccine efficacy.
Main Results:
- gp50- PrV mutants were virulent in mice, causing severe symptoms and death, despite lack of free virus shedding.
- gII- PrV mutants were avirulent in mice and pigs, with no disease signs or virus shedding.
- Pigs infected with gp50- PrV showed significant protection against challenge with virulent PrV.
- Nonspreading gp50- PrV mutants are sufficient for virulence via cell-to-cell transmission in mice.
Conclusions:
- Direct cell-to-cell transmission of gp50- PrV mutants is sufficient for full virulence in mice.
- Vaccination with nonspreading gp50- PrV mutants confers protection against virulent PrV challenge in pigs.
- gp50- PrV mutants represent a promising basis for developing novel, nonspreading live herpesvirus vaccines.