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In Vitro ELISA Test to Evaluate Rabies Vaccine Potency
Published on: May 11, 2020
Roles of the Rabies Virus Phosphoprotein Isoforms in Pathogenesis
Kazuma Okada1, Naoto Ito2, Satoko Yamaoka1
1The United Graduate School of Veterinary Sciences, Gifu University, Gifu, Japan.
Unlabelled:
Rabies virus (RABV) P gene mRNA encodes five in-frame start codons, resulting in expression of full-length P protein (P1) and N-terminally truncated P proteins (tPs), designated P2, P3, P4, and P5. Despite the fact that some tPs are known as interferon (IFN) antagonists, the importance of tPs in the pathogenesis of RABV is still unclear. In this study, to examine whether tPs contribute to pathogenesis, we exploited a reverse genetics approach to generate CE(NiP)ΔP2-5, a mutant of pathogenic CE(NiP) in which the P gene was mutated by replacing all of the start codons (AUG) for tPs with AUA. We confirmed that while CE(NiP) expresses detectable levels of P2 and P3, CE(NiP)ΔP2-5 has an impaired ability to express these tPs. After intramuscular inoculation, CE(NiP)ΔP2-5 caused significantly lower morbidity and mortality rates in mice than did CE(NiP), indicating that tPs play a critical role in RABV neuroinvasiveness. Further examinations revealed that this less neuroinvasive phenotype of CE(NiP)ΔP2-5 correlates with its impaired ability to replicate in muscle cells, indicative of the importance of tPs in viral replication in muscle cells. We also demonstrated that CE(NiP)ΔP2-5 infection induced a higher level of Ifn-β gene expression in muscle cells than did CE(NiP) infection, consistent with the results of an IFN-β promoter reporter assay suggesting that all tPs function to antagonize IFN induction in muscle cells. Taken together, our findings strongly suggest that tPs promote viral replication in muscle cells through their IFN antagonist activities and thereby support infection of peripheral nerves.
Importance:
Despite the fact that previous studies have demonstrated that P2 and P3 of RABV have IFN antagonist activities, the actual importance of tPs in pathogenesis has remained unclear. Here, we provide the first evidence that tPs contribute to the pathogenesis of RABV, especially its neuroinvasiveness. Our results also show the mechanism underlying the neuroinvasiveness driven by tPs, highlighting the importance of their IFN antagonist activities, which support viral replication in muscle cells.
Insights
Truncated P proteins (tPs) are crucial for rabies virus (RABV) pathogenesis and neuroinvasiveness. These tPs antagonize interferon, promoting viral replication in muscle cells and supporting nerve infection.
Area of Science:
- Virology
- Immunology
- Molecular Biology
Background:
- Rabies virus (RABV) P gene mRNA encodes multiple truncated P proteins (tPs) alongside the full-length P1 protein.
- While some tPs are known interferon (IFN) antagonists, their precise role in RABV pathogenesis remains largely undefined.
Purpose of the Study:
- To investigate the contribution of tPs to RABV pathogenesis, specifically neuroinvasiveness.
- To elucidate the mechanism by which tPs influence viral replication and host immune response.
Main Methods:
- Generation of a RABV mutant (CE(NiP)ΔP2-5) with start codons for tPs mutated using reverse genetics.
- Intramuscular inoculation of mice with wild-type and mutant RABV strains.
- Assessment of viral replication in muscle cells and IFN-β gene expression.
- IFN-β promoter reporter assays to evaluate tP antagonist activity.
Main Results:
- The CE(NiP)ΔP2-5 mutant showed impaired expression of tPs compared to the wild-type CE(NiP).
- Mice infected with CE(NiP)ΔP2-5 exhibited significantly reduced morbidity, mortality, and neuroinvasiveness.
- Impaired viral replication in muscle cells and increased IFN-β expression were observed in CE(NiP)ΔP2-5 infected cells.
- All tPs demonstrated activity in antagonizing IFN induction in muscle cells.
Conclusions:
- Truncated P proteins (tPs) play a critical role in RABV pathogenesis and neuroinvasiveness.
- tPs promote viral replication in muscle cells by antagonizing the host's interferon response.
- This mechanism facilitates the spread of RABV to peripheral nerves, highlighting tPs as key virulence factors.
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