Transgenic expression of non-structural genes of Theiler's virus suppresses initial viral replication and

Hyun Seok Kang1, Jinjong Myoung1,2, Eui Young So1,3

  • 1Department of Microbiology-Immunology, Northwestern University Medical School, 303 East Chicago Ave., Chicago, IL, 60611, USA.

Abstract

Insights

Transgenic mice expressing viral non-structural genes showed reduced viral replication and disease severity. This suggests viral gene expression can prevent pathogenic antiviral immune responses, offering a novel therapeutic strategy for viral diseases.

Area of Science:

  • Neuroimmunology
  • Virology
  • Immunology

Background:

  • Theiler's murine encephalomyelitis virus (TMEV) infection in SJL/J mice models multiple sclerosis (MS).
  • Viral load is critical in central nervous system (CNS) inflammatory diseases.
  • Inhibiting viral replication is key to preventing viral pathogenicity.

Purpose of the Study:

  • To investigate the effect of viral non-structural protein P2/P3 gene expression on TMEV-induced demyelinating disease.
  • To analyze viral loads, immune responses, and cytokine production in transgenic mice.

Main Methods:

  • Generated P2/P3-expressing transgenic mice on C57BL/6 and SJL/J backgrounds.
  • Analyzed viral persistence, cytokine production, and immune responses using qPCR, ELISA, and flow cytometry.
  • Assessed viral replication and cytokine production in cells transfected with viral gene regions.

Main Results:

  • Transgenic mice showed reduced virus-specific T cell responses but higher viral loads during chronic infection.
  • P2/P3-transgenic SJL mice exhibited reduced disease incidence and severity.
  • Transgenic cells showed lower viral replication and higher IFN-α/β production, with partial virus specificity.

Conclusions:

  • Viral non-structural gene expression inhibits initial viral replication and pathogenic antiviral immune responses.
  • Elevated innate immune cytokines in transgenic cells contribute to viral inhibition.
  • Viral non-structural gene expression presents a potential strategy to prevent virus-specific pathogenesis.

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