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Published on: June 3, 2012
Prion Protein is a Novel Modulator of Influenza: Potential Implications for Anti-Influenza Therapeutics
Suehiro Sakaguchi1, Junji Chida1
1Division of Molecular Neurobiology, Institute for Enzyme Research (KOSOKEN), Tokushima University, 3-18-15 Kuramoto, Tokushima 770-8503, Japan.
Abstract:
Worldwide spread of influenza A virus (IAV) strains, which are resistant to currently available anti- influenza agents such as viral neuraminidase inhibitors, has encouraged identification of new target molecules for anti-influenza agents. Reactive oxygen species (ROS) causing oxidative stress play a pivotal role in the pathogenesis of lung injuries induced by infection with IAVs, therefore suggesting that anti-oxidative therapeutics targeting cellular molecules could be beneficial against IAV infection without inducing drug-resistant IAV strains. We recently found that the normal cellular prion protein, PrPC, whose conformational conversion into the amyloidogenic isoform, PrPSc, in the brain is a key pathogenic event in prion diseases, is expressed by lung epithelial cells and exerts a protective role against IAV infection in mice by reducing ROS in infected lungs. The Cu content and activity of anti- oxidative enzyme Cu/Zn-superoxide dismutase, or SOD1, were lower in the lungs of PrPC-knockout mice, suggesting that the anti-oxidative activity of PrPC is probably attributable to its function of activating SOD1 through regulating Cu content in lungs. Here, we introduce PrPC as a novel modulator of influenza and its potential implication for anti-oxidative therapies for IAV infection. We also introduce other candidate targets reported for anti- oxidative anti-influenza therapies.
Insights
The normal cellular prion protein (PrPC) protects against influenza A virus (IAV) lung injury by reducing oxidative stress. Targeting PrPC may offer new anti-influenza therapies without drug resistance.
Area of Science:
- Virology
- Biochemistry
- Cell Biology
Background:
- Influenza A virus (IAV) strains resistant to current antivirals necessitate novel therapeutic targets.
- Reactive oxygen species (ROS) contribute to IAV-induced lung injury, suggesting antioxidant strategies.
Purpose of the Study:
- To investigate the role of cellular prion protein (PrPC) in IAV infection and its potential as an antioxidant therapeutic target.
Main Methods:
- Studied PrPC expression in lung epithelial cells.
- Utilized PrPC-knockout mice to assess its role in IAV infection.
- Measured ROS levels and antioxidant enzyme activity (SOD1) in lung tissue.
Main Results:
- PrPC is expressed in lung epithelial cells and reduces ROS during IAV infection in mice.
- PrPC-knockout mice showed reduced Cu content and SOD1 activity in lungs.
- PrPC appears to activate SOD1 by regulating lung copper content.
Conclusions:
- PrPC acts as a protective factor against IAV-induced lung injury by modulating oxidative stress.
- PrPC's activation of SOD1 presents a novel therapeutic avenue for influenza, potentially circumventing drug resistance.
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