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Published on: December 29, 2015
Increased Cleavage of Japanese Encephalitis Virus prM Protein Promotes Viral Replication but Attenuates Virulence
Junyao Xiong1,2,3, Mengxue Yan1,2,3, Shuo Zhu1,2,3
1State Key Laboratory of Agricultural Microbiology, Huazhong Agricultural Universitygrid.35155.37, Wuhan, Hubei, China.
Abstract:
In flavivirus, the furin-mediated cleavage of prM is mandatory to produce infectious particles, and the immature particles containing uncleaved prM cannot undergo membrane fusion and release to the extracellular environment. However, the detailed relationship between viral replication or pathogenicity and furin in Japanese encephalitis virus (JEV) hasn't been clarified. Here, JEV with the mutations in furin cleavage sites and its nearby were constructed. Compared with WT virus, the mutant virus showed enhanced cleavage efficiency of prM protein and increased replication ability. Furthermore, we found that the mutations mainly promote genomic replication and assembly of JEV. However, the mutant formed smaller plaques than WT virus in plaque forming assay, indicating the lower cytopathogenicity of mutant virus. To assess the virulence of JEV mutant, an in vivo assay was performed using a mouse model. A higher survival rate and attenuated neuroinflammation were observed in JEV mutant-infected mice than those of WT-infected mice, suggesting the cleavage of prM by furin was closely related to viral virulence. These findings will provide new understanding on JEV pathogenesis and contribute to the development of novel JEV vaccines. IMPORTANCE Japanese encephalitis virus (JEV) is the leading cause of viral encephalitis epidemics in Southeast Asia, affecting mostly children, with high morbidity and mortality. During the viral maturation process, prM is cleaved into M by the cellular endoprotease furin in the acidic secretory system. After cleavage of the prM protein, mature virions are exocytosed. Here, the mutant in furin cleavage sites and its nearby was constructed, and the results showed that the mutant virus with enhanced replication mainly occurred in the process of genomic replication and assembly. Meanwhile, the mutant showed an attenuated virulence than WT virus in vivo. Our study contributes to understanding the function of prM and M proteins and provides new clues for live vaccine designation for JEV.
Insights
Mutations enhancing furin-mediated cleavage of Japanese encephalitis virus (JEV) prM protein increased viral replication but reduced pathogenicity in mice. This suggests prM cleavage by furin is key to JEV virulence and offers insights for vaccine development.
Area of Science:
- Virology
- Molecular Biology
- Immunology
Background:
- Japanese encephalitis virus (JEV) causes severe encephalitis, particularly in children.
- Furin-mediated cleavage of the prM protein is essential for flavivirus maturation and infectivity.
- The precise role of furin in JEV replication and pathogenesis remains unclear.
Purpose of the Study:
- To investigate the impact of mutations in JEV furin cleavage sites on viral replication and pathogenicity.
- To elucidate the relationship between prM cleavage efficiency and JEV virulence.
Main Methods:
- Construction of JEV mutants with altered furin cleavage sites.
- Assessment of prM cleavage efficiency and viral replication in vitro.
- Plaque formation assays to evaluate cytopathogenicity.
- In vivo studies using a mouse model to determine viral virulence and survival rates.
Main Results:
- Mutant JEV exhibited enhanced prM cleavage and increased replication, primarily promoting genomic replication and assembly.
- Mutant JEV formed smaller plaques, indicating reduced cytopathogenicity compared to wild-type (WT) virus.
- Mice infected with mutant JEV showed higher survival rates and attenuated neuroinflammation, suggesting decreased virulence.
Conclusions:
- Furin-mediated prM cleavage significantly influences JEV replication and virulence.
- Enhanced prM cleavage leads to attenuated JEV pathogenicity in vivo.
- These findings provide insights into JEV pathogenesis and potential strategies for live JEV vaccine design.

