Related Experiment Video
Updated: May 2, 2026

Intracerebroventricular Viral Injection of the Neonatal Mouse Brain for Persistent and Widespread Neuronal Transduction
Published on: September 15, 2014
Characterization of Japanese Encephalitis Virus Isolated from Persistently Infected Mouse Embryo Cells
Yume Kondo1, Tomoyoshi Komiya1
1Faculty of Health and Medical Sciences, Hokuriku University, 1-1, Taiyogaoka, Kanazawa 920-1180, Ishikawa, Japan.
Abstract:
Japanese encephalitis virus (JEV) has a positive-sense single-stranded RNA genome and belongs to the genus Flavivirus of the family Flaviviridae. Persistent JEV infection was previously shown in pig blood cells, which act as a natural reservoir of this virus. We aimed to determine the pathogenicity factors involved in persistent JEV infection by analyzing the pathogenicity and genome sequences of a virus isolated from a persistent infection model. We established persistent JEV infections in cells by inoculating mouse fetus primary cell cultures with the Beijing-1 strain of JEV and then performing repeated infected cell passages, harvesting viruses after each passage while monitoring the plaque size over 100 generations. The virus growth rate was compared among Vero, C6/36, and Neuro-2a cells. The pathogenicity was examined in female ICR mice at several ages. Additionally, we determined the whole-genome sequences. The 134th Beijing-1-derived persistent virus (ME134) grew in Vero cells at a similar rate to the parent strain but did not grow well in C6/36 or Neuro-2a cells. No differences were observed in pathogenicity after intracerebral inoculation in mice of different ages, but the survival time was extended in older mice. Mutations in the persistent virus genomes were found across all regions but were mainly focused in the NS3, NS4b, and 3'NCR regions, with a 34-base-pair deletion found in the variable region. The short deletion in the 3'NCR region appeared to be responsible for the reduced pathogenicity and growth efficiency.
Insights
Persistent Japanese encephalitis virus (JEV) infection in mice showed reduced pathogenicity and growth efficiency. A specific 3
Area of Science:
- Virology
- Molecular Biology
- Genetics
Background:
- Japanese encephalitis virus (JEV), a Flavivirus, establishes persistent infections in natural reservoirs like pig blood cells.
- Understanding JEV pathogenicity factors is crucial for controlling persistent infections.
Purpose of the Study:
- To identify pathogenicity factors in persistent JEV infection using a cell culture model.
- To analyze the genomic and pathogenicity changes of JEV during prolonged infection.
Main Methods:
- Established persistent JEV infection in mouse fetus primary cells through serial passages over 100 generations.
- Compared viral growth rates in Vero, C6/36, and Neuro-2a cells.
- Assessed pathogenicity in ICR mice of varying ages and determined whole-genome sequences.
Main Results:
- The persistent JEV strain (ME134) showed similar growth in Vero cells but reduced growth in C6/36 and Neuro-2a cells.
- No significant pathogenicity differences were observed in young mice, but older mice exhibited extended survival.
- Genomic analysis revealed mutations, notably a 34-base-pair deletion in the 3'NCR region, linked to reduced pathogenicity and growth.
Conclusions:
- A specific deletion in the 3'NCR region of the JEV genome is associated with decreased pathogenicity and growth efficiency during persistent infection.
- The ME134 strain exhibits altered growth characteristics and reduced virulence compared to the parent strain.

