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Updated: Jul 9, 2026

In Vitro ELISA Test to Evaluate Rabies Vaccine Potency
Published on: May 11, 2020
The glycoprotein and the matrix protein of rabies virus affect pathogenicity by regulating viral replication and
Rojjanaporn Pulmanausahakul1, Jianwei Li, Matthias J Schnell
1Department of Microbiology and Immunology, Jefferson Vaccine Center, Thomas Jefferson University, Philadelphia, Pennsylvania, USA.
Abstract:
While the glycoprotein (G) of rabies virus (RV) is known to play a predominant role in the pathogenesis of rabies, the function of the RV matrix protein (M) in RV pathogenicity is not completely clear. To further investigate the roles of these proteins in viral pathogenicity, we constructed chimeric recombinant viruses by exchanging the G and M genes of the attenuated SN strain with those of the highly pathogenic SB strain. Infection of mice with these chimeric viruses revealed a significant increase in the pathogenicity of the SN strain bearing the RV G from the pathogenic SB strain. Moreover, the pathogenicity was further increased when both G and M from SB were introduced into SN. Interestingly, the replacement of the G or M gene or both in SN by the corresponding genes of SB was associated with a significant decrease in the rate of viral replication and viral RNA synthesis. In addition, a chimeric SN virus bearing both the M and G genes from SB exhibited more efficient cell-to-cell spread than a chimeric SN virus in which only the G gene was replaced. Together, these data indicate that both G and M play an important role in RV pathogenesis by regulating virus replication and facilitating cell-to-cell spread.
Insights
Rabies virus (RV) glycoprotein (G) and matrix protein (M) significantly impact rabies pathogenicity. Replacing SN strain genes with those from the pathogenic SB strain increased virulence, affecting replication and cell spread.
Area of Science:
- Virology
- Molecular Biology
- Pathogenesis
Background:
- The glycoprotein (G) of rabies virus (RV) is crucial for pathogenesis.
- The role of the RV matrix protein (M) in pathogenicity is less understood.
Purpose of the Study:
- To investigate the roles of RV G and M proteins in viral pathogenicity.
- To construct chimeric recombinant viruses to analyze gene function.
Main Methods:
- Exchanged G and M genes between attenuated SN and pathogenic SB rabies virus strains.
- Infected mice with chimeric viruses to assess pathogenicity.
- Measured viral replication and RNA synthesis rates.
Main Results:
- Chimeric SN viruses with SB G or both G and M showed increased pathogenicity in mice.
- Replacing G or M genes decreased viral replication and RNA synthesis.
- Chimeric SN virus with both SB M and G genes demonstrated enhanced cell-to-cell spread.
Conclusions:
- Both RV G and M proteins are critical for rabies pathogenesis.
- These proteins regulate virus replication and facilitate cell-to-cell spread, influencing overall virulence.
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