The p14 FAST protein of reptilian reovirus increases vesicular stomatitis virus neuropathogenesis

Christopher W Brown1, Kyle B Stephenson, Stephen Hanson

  • 1Department of Microbiology and Immunology, Ottawa Health Research Institute, University of Ottawa, Ontario, Canada.

Journal of Virology
|October 31, 2008
PubMed

Insights

Reovirus fusion-associated small transmembrane (FAST) proteins enhance viral spread and disease. Introducing the p14 FAST protein into vesicular stomatitis virus (VSV) increased its virulence in mice, confirming FAST proteins as virulence factors.

Area of Science:

  • Virology
  • Molecular Biology
  • Pathogenesis

Background:

  • Orthoreoviruses produce fusion-associated small transmembrane (FAST) proteins that mediate cell-cell fusion and syncytium formation.
  • FAST proteins are hypothesized to be virulence factors, promoting viral spread and altering cytopathology.

Purpose of the Study:

  • To directly investigate the role of reovirus FAST proteins as virulence factors.
  • To determine if the p14 FAST protein enhances the virulence of a heterologous virus.

Main Methods:

  • The gene for the reptilian reovirus p14 FAST protein was inserted into vesicular stomatitis virus (VSV).
  • The resulting recombinant VSV (VSV/FAST) was compared to a control VSV expressing green fluorescent protein (VSV/GFP) in vitro and in vivo.
  • Viral growth, neuropathology, and host response were assessed in BALB/c mice.

Main Results:

  • VSV/FAST exhibited a fusogenic phenotype in cell culture.
  • In vivo, VSV/FAST showed enhanced growth and spread in the brains of mice compared to VSV/GFP.
  • VSV/FAST infection led to increased hind-limb paralysis, larger brain tissue infection volume, and more severe neuropathology.

Conclusions:

  • The reovirus p14 FAST protein functions as a virulence factor, enhancing viral dissemination and pathogenesis.
  • The fusogenic properties conferred by FAST proteins contribute to increased viral virulence.
  • Interferon induction is a dominant phenotype that can attenuate viral virulence, even in the presence of FAST proteins.

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