MiR-155 induction in microglial cells suppresses Japanese encephalitis virus replication and negatively modulates

Siddhika Pareek, Saugata Roy, Bharti Kumari

  • 1Vaccine and Infectious Disease Research Center, Translational Health Science and Technology Institute, 496, Udyog Vihar Phase-III, Gurgaon 122016, India. banerjeea@thsti.res.in.

Abstract

Insights

Inducing miR-155 in human microglial cells helps limit Japanese encephalitis virus (JEV) replication. This microRNA modulation reduces viral load and innate immune gene expression during JEV infection.

Area of Science:

  • Neuroscience
  • Immunology
  • Virology

Background:

  • Microglial cells are key immune cells in the central nervous system.
  • Japanese encephalitis virus (JEV) infects microglial cells, contributing to neuroinflammation.
  • MicroRNAs, such as miR-155 and miR-146a, influence microglial inflammatory responses.

Purpose of the Study:

  • To investigate the impact of modulating miR-155 and miR-146a on JEV infection in human microglial cells.
  • To understand the role of these microRNAs in regulating innate immune responses during JEV infection.

Main Methods:

  • Human microglial cells (CHME3) were infected with JEV in vitro.
  • miR-155 and miR-146a were overexpressed to study their effects.
  • Gene and protein expression related to innate immunity were analyzed using PCR arrays, qPCR, western blot, and FACS.
  • JEV replication was quantified via viral RNA, protein levels, and plaque assays.

Main Results:

  • Overexpression of miR-155 significantly reduced JEV replication.
  • miR-155 overexpression attenuated the induction of IRF8 and CFH during JEV infection.
  • JEV-induced NF-κB signaling and p-STAT1 expression were reduced by miR-155.
  • CD45, a negative regulator of microglia activation, was increased by miR-155 overexpression.

Conclusions:

  • Upregulation of miR-155 in human microglial cells can suppress JEV-induced innate immune responses.
  • miR-155 may play a protective role by limiting JEV replication in the brain.