Roles of the Rabies Virus Phosphoprotein Isoforms in Pathogenesis

Kazuma Okada1, Naoto Ito2, Satoko Yamaoka1

  • 1The United Graduate School of Veterinary Sciences, Gifu University, Gifu, Japan.

Journal of Virology
|July 8, 2016
PubMed
Abstract

Insights

Truncated P proteins (tPs) are crucial for rabies virus (RABV) pathogenesis and neuroinvasiveness. These tPs antagonize interferon, promoting viral replication in muscle cells and supporting nerve infection.

Area of Science:

  • Virology
  • Immunology
  • Molecular Biology

Background:

  • Rabies virus (RABV) P gene mRNA encodes multiple truncated P proteins (tPs) alongside the full-length P1 protein.
  • While some tPs are known interferon (IFN) antagonists, their precise role in RABV pathogenesis remains largely undefined.

Purpose of the Study:

  • To investigate the contribution of tPs to RABV pathogenesis, specifically neuroinvasiveness.
  • To elucidate the mechanism by which tPs influence viral replication and host immune response.

Main Methods:

  • Generation of a RABV mutant (CE(NiP)ΔP2-5) with start codons for tPs mutated using reverse genetics.
  • Intramuscular inoculation of mice with wild-type and mutant RABV strains.
  • Assessment of viral replication in muscle cells and IFN-β gene expression.
  • IFN-β promoter reporter assays to evaluate tP antagonist activity.

Main Results:

  • The CE(NiP)ΔP2-5 mutant showed impaired expression of tPs compared to the wild-type CE(NiP).
  • Mice infected with CE(NiP)ΔP2-5 exhibited significantly reduced morbidity, mortality, and neuroinvasiveness.
  • Impaired viral replication in muscle cells and increased IFN-β expression were observed in CE(NiP)ΔP2-5 infected cells.
  • All tPs demonstrated activity in antagonizing IFN induction in muscle cells.

Conclusions:

  • Truncated P proteins (tPs) play a critical role in RABV pathogenesis and neuroinvasiveness.
  • tPs promote viral replication in muscle cells by antagonizing the host's interferon response.
  • This mechanism facilitates the spread of RABV to peripheral nerves, highlighting tPs as key virulence factors.

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