Poliovirus type 1 infection of murine PRNP-knockout neuronal cells

Andreina Baj1, Alessia Bettaccini, Takuya Nishimura

  • 1Department of Clinical and Biological Sciences, University of Insubria, Varese, Italy.

Insights

Prion protein (Prnp) expression in mouse neuronal cells blocks poliovirus-1 (PV-1) replication. Prion-deficient cells are permissive to PV-1, showing increased viral titers and altered gene expression, suggesting a new animal model for poliovirus research.

Area of Science:

  • Neurovirology
  • Prion Biology
  • Molecular Virology

Background:

  • Prion protein (Prnp) influences viral infections, including coxsackievirus B3 replication.
  • Murine neuronal cells express Tage4, the homolog of the human poliovirus receptor (CD155/hPVR).
  • Susceptibility of mice to poliovirus via parenteral routes necessitates investigation into neuronal cell permissiveness.

Purpose of the Study:

  • To investigate the role of Prnp expression in poliovirus-1 (PV-1) susceptibility in murine neuronal cell lines.
  • To determine if Prnp expression affects PV-1 replication and host gene response.

Main Methods:

  • Utilized prion-deficient (Prnp-/-) and wild-type (Prnp+/+) murine neuronal cell lines, including those transfected with Prnp or a void vector.
  • Infected cell lines with PV-1 and assessed viral replication through viral titration, immunofluorescence, and quantitative PCR.
  • Analyzed gene expression profiles in infected cells using PCR.

Main Results:

  • Prnp-deficient cells showed high PV-1 titers, while Prnp-expressing cells were non-permissive.
  • PV-1 infection upregulated various immune and growth factor genes in permissive Prnp-deficient cells.
  • Gene expression analysis confirmed viral presence and host response differences.

Conclusions:

  • Prnp expression confers resistance to PV-1 infection in murine neuronal cells.
  • Prion-deficient mice may serve as a sensitive animal model for poliovirus studies.
  • Prnp's role in regulating viral permissiveness has implications for understanding neurotropic enterovirus infections.