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A Murine Model of Dengue Virus-induced Acute Viral Encephalitis-like Disease
Published on: April 28, 2019
8-nitroguanosine formation in viral pneumonia and its implication for pathogenesis
Takaaki Akaike1, Shinichiro Okamoto, Tomohiro Sawa
1Department of Microbiology, Kumamoto University School of Medicine, Kumamoto 860-0811, Japan. takakaik@gpo.kumamoto-u.ac.jp
Abstract:
For many diseases, mediation of pathogenesis by nitric oxide (NO) has been suggested. In this study, we explored NO-induced viral pathogenesis with a focus on nucleic acid damage as evidenced by 8-nitroguanosine formation in vivo. Wild-type mice and littermate mice deficient in inducible NO synthase (iNOS) were infected with influenza or Sendai virus. Formation of 8-nitroguanosine in virus-infected lungs was assessed immunohistochemically with an antibody specific for 8-nitroguanosine. Extensive nitration of RNA either treated with peroxynitrite or obtained from cultured RAW 264 cells expressing iNOS was readily detected by this antibody. Strong 8-nitroguanosine immunostaining was evident primarily in the cytosol of bronchial and bronchiolar epithelial cells of virus-infected wild-type mice but not iNOS-deficient mice. This staining colocalized with iNOS immunostaining in the lung. 8- Nitroguanosine staining disappeared after addition of exogenous authentic 8-nitroguanosine during the antibody reaction and after pretreatment of tissues with sodium hydrosulfite, which reduces 8-nitroguanosine to 8-aminoguanosine. NO was generated in excess in lungs of wild-type mice but was eliminated in iNOS-deficient mice after virus infection; this result also correlated well with formation of 8-nitroguanosine and 3-nitrotyrosine. One consequence of the lack of iNOS expression was marked improvement in histopathological changes in the lung and the lethality of the infection without effects on cytokine responses and viral clearance. It is intriguing that 8-nitroguanosine markedly stimulated superoxide generation from cytochrome P450 reductase and iNOS in vitro. The present data constitute a demonstration of 8-nitroguanosine formation in vivo and suggest a potential role for NO-induced nitrative stress in viral pathogenesis.
Insights
This study demonstrates nitric oxide-induced viral pathogenesis via nucleic acid damage, specifically 8-nitroguanosine formation in vivo. Mice lacking inducible nitric oxide synthase showed improved lung pathology and survival, suggesting a role for nitrative stress in viral disease.
Area of Science:
- Virology
- Immunology
- Biochemistry
Background:
- Nitric oxide (NO) is implicated in the pathogenesis of various diseases.
- The role of NO in viral pathogenesis, particularly concerning nucleic acid damage, requires further investigation.
Purpose of the Study:
- To explore nitric oxide-induced viral pathogenesis.
- To investigate the formation of 8-nitroguanosine as a marker of nucleic acid damage in vivo.
- To assess the impact of inducible nitric oxide synthase (iNOS) deficiency on viral infection outcomes.
Main Methods:
- Infection of wild-type and iNOS-deficient mice with influenza or Sendai virus.
- Immunohistochemical assessment of 8-nitroguanosine formation in lung tissues.
- Measurement of NO generation, 8-nitroguanosine, and 3-nitrotyrosine levels.
- Evaluation of histopathological changes, lethality, cytokine responses, and viral clearance.
Main Results:
- 8-Nitroguanosine formation was detected in the lungs of virus-infected wild-type mice, colocalizing with iNOS expression.
- iNOS-deficient mice exhibited significantly reduced 8-nitroguanosine formation, improved lung histopathology, and lower lethality.
- Viral clearance and cytokine responses were not affected by iNOS deficiency.
- 8-Nitroguanosine was found to stimulate superoxide generation in vitro.
Conclusions:
- The study demonstrates the in vivo formation of 8-nitroguanosine, indicating nitric oxide-induced nucleic acid damage during viral infections.
- Inducible nitric oxide synthase plays a critical role in NO-mediated viral pathogenesis and associated lung injury.
- Targeting nitrative stress may offer a therapeutic strategy for viral diseases.
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