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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.
Abstract:
Transfection of the prion protein gene (Prnp) into prion-deficient mouse cells was shown to reduce the replication of coxsackievirus B3, an enterovirus. Because mice can be susceptible to poliovirus infection by parenteral routes, the authors tested the susceptibility to poliovirus-1 (PV-1) of a panel of murine neuronal cell lines differing in their ability to express Prnp. The investigated cell lines (prionless HpL3.4 cells, HpL3.4 cells transfected with a Prnp vector, HpL3.4 cells transfected with a void vector, wild-type Hw3.5 Prnp(+/+) cells) expressed the murine homologue (Tage4) of human poliovirus receptor (CD155/hPVR). PV-1 infection of Prnp(-/-) HpL3.4 cells resulted in the production of high viral titers, though viral antigens could be detected in only 0.5% to 2% of cells. Wild-type Prnp(+/+) cells and prionless cells transfected with the Prnp gene were not permissive to PV-1. Results of viral titration and immunofluorescence were confirmed by conventional polymerase chain reaction (PCR) and quantitative real-time PCR. Exposure to PV-1 had no influence on the gene expression profile of Prnp(+/+) cells. In contrast, PV-1 infection was associated with upregulation of several genes in permissive Prnp(-/-) cell cultures: type I interferon (IFN) genes, IFN-related developmental regulator 1 (IFNRD1), tumor necrosis factor superfamily member 13b (TNFSF13b), interleukin (IL) - 7, granulocyte/macrophage colony-stimulating factors (CSFs), hepatocyte growth factor (HGF), vascular endothelial growth factor-A, transforming growth factors beta1 and beta3 (TGFb1, TGFb3), as well as a variety of bone morphogenetic proteins endowed with neuroprotective activity. Distinction of permissive from nonpermissive neuronal cells on the basis of Prnp expression suggests that prion-deficient mice could represent an extraordinarily sensitive animal model for poliovirus infection.
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.
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