Natural history of murine gamma-herpesvirus infection

A A Nash1, B M Dutia, J P Stewart

  • 1Laboratory for Clinical and Molecular Virology, Department of Veterinary Pathology, University of Edinburgh, Summerhall, Edinburgh EH9 1QH, UK. tony.nash@ed.ac.uk

Insights

Murine gamma-herpesvirus 68 (MHV-68) establishes latent infections in mice, impacting immune responses and causing pathologies. Current vaccination and chemotherapy methods struggle to prevent latent MHV-68 infection.

Area of Science:

  • Virology
  • Immunology
  • Pathology

Background:

  • Murine gamma-herpesvirus 68 (MHV-68) infects rodents, causing lung epithelial cell replication and latent B lymphocyte infection.
  • Persistent MHV-68 infection can lead to splenomegaly, infectious mononucleosis-like syndrome, and B-cell lymphomas.
  • The MHV-68 genome contains genes homologous to other gamma-herpesviruses and novel genes influencing latency and immune evasion.

Purpose of the Study:

  • To investigate the role of innate and adaptive immune responses in controlling MHV-68 infection.
  • To explore the mechanisms of MHV-68-induced pathologies, including lymphoproliferative disease.
  • To evaluate the efficacy of vaccination and chemotherapy in controlling MHV-68 infection and latency.

Main Methods:

  • Infection of mice with MHV-68 and analysis of viral replication, latency, and immune cell responses.
  • Genetic sequencing of the MHV-68 genome to identify key genes.
  • Assessment of immune responses, including type I and type II interferons, CD4+ and CD8+ T cells.
  • Evaluation of vaccination strategies and antiviral compounds.

Main Results:

  • Type I interferon is crucial for limiting initial MHV-68 infection, while type II interferon influences lymphoid tissue integrity and virus persistence.
  • CD8+ T cells are vital for primary infection recovery and regulating latently infected cells, but memory CD8+ T cells are less effective at preventing lung recurrences.
  • MHV-68 employs immune evasion strategies, including downregulating MHC class I and producing a chemokine-binding protein.
  • Vaccination with gp150 and antiviral nucleoside analogues show limited success in preventing MHV-68 replication or establishing latency.

Conclusions:

  • MHV-68 infection involves complex interactions between the virus and host immune system, leading to various pathologies.
  • Effective control of MHV-68 latency remains a significant challenge, with current interventions showing limited efficacy.
  • MHV-68 serves as a valuable model for understanding gamma-herpesvirus pathogenesis and developing therapeutic strategies.