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.

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.