A replication-deficient gammaherpesvirus vaccine protects mice from lytic disease and reduces latency establishment

Wesley A Bland1,2, Dipanwita Mitra3, Shana Owens1

  • 1Department of Microbiology and Immunology, University of Arkansas for Medical Sciences, Little Rock, AR, USA.

NPJ Vaccines
|June 24, 2024
PubMed

Insights

A novel replication-deficient virus (RDV) vaccine strategy shows promise for gammaherpesvirus control. Prime-boost vaccination with RDV-50.stop protects against infection, reduces latency, and prevents severe disease in mice.

Area of Science:

  • Virology
  • Immunology
  • Vaccine Development

Background:

  • Gammaherpesviruses cause lifelong infections and are linked to significant disease burden.
  • Current vaccine options for human gammaherpesviruses like Epstein-Barr virus are limited.
  • Murine gammaherpesvirus 68 (MHV68) serves as a model for studying gammaherpesvirus pathogenesis.

Purpose of the Study:

  • To develop and evaluate a novel replication-deficient virus (RDV) vaccine platform for gammaherpesviruses.
  • To assess the immunogenicity and protective efficacy of an RDV-50.stop vaccine in a mouse model.
  • To investigate the impact of RDV-50.stop vaccination on viral replication, latency, and disease severity.

Main Methods:

  • Generation of a revertant-free RDV (RDV-50.stop) lacking essential replication protein ORF50.
  • Prime-boost vaccination of mice with RDV-50.stop.
  • Challenge with wild-type MHV68 and assessment of viral load, latency, and disease outcomes.
  • Evaluation in wild-type and Ifnar1-/- mice lacking the type I interferon receptor.

Main Results:

  • RDV-50.stop vaccination elicited virus-specific neutralizing antibodies and T cell responses.
  • Vaccination with RDV-50.stop significantly reduced viral replication and impaired latency establishment post-challenge.
  • RDV-50.stop vaccination protected Ifnar1-/- mice from severe disease and mortality.
  • Persistent gammaherpesvirus in vivo despite immunity poses a challenge to sterilizing immunity.

Conclusions:

  • Prime-boost vaccination with a replication-deficient gammaherpesvirus provides protection against acute infection and latency.
  • The RDV-50.stop platform is a promising strategy for gammaherpesvirus vaccine development.
  • Overcoming viral persistence in the presence of immunity is crucial for achieving sterilizing immunity.