Role of Hydrogen Sulfide in Paramyxovirus Infections

Author:

Li Hui1,Ma Yinghong1,Escaffre Oliver2,Ivanciuc Teodora1,Komaravelli Narayana1,Kelley John P.1,Coletta Ciro3,Szabo Csaba3,Rockx Barry24,Garofalo Roberto P.156,Casola Antonella156

Affiliation:

1. Department of Pediatrics, University of Texas Medical Branch at Galveston, Galveston, Texas, USA

2. Department of Pathology, University of Texas Medical Branch at Galveston, Galveston, Texas, USA

3. Department of Anesthesiology, University of Texas Medical Branch at Galveston, Galveston, Texas, USA

4. Department of Rare and Emerging Viral Infections and Response, Center for Infectious Disease Control, National Institute for Public Health and the Environment, Bilthoven, The Netherlands

5. Sealy Center for Vaccine Development, University of Texas Medical Branch at Galveston, Galveston, Texas, USA

6. Sealy Center for Molecular Medicine, University of Texas Medical Branch at Galveston, Galveston, Texas, USA

Abstract

ABSTRACT Hydrogen sulfide (H 2 S) is an endogenous gaseous mediator that has gained increasing recognition as an important player in modulating acute and chronic inflammatory diseases. However, its role in virus-induced lung inflammation is currently unknown. Respiratory syncytial virus (RSV) is a major cause of upper and lower respiratory tract infections in children for which no vaccine or effective treatment is available. Using the slow-releasing H 2 S donor GYY4137 and propargylglycin (PAG), an inhibitor of cystathionine-γ-lyase (CSE), a key enzyme that produces intracellular H 2 S, we found that RSV infection led to a reduced ability to generate and maintain intracellular H 2 S levels in airway epithelial cells (AECs). Inhibition of CSE with PAG resulted in increased viral replication and chemokine secretion. On the other hand, treatment of AECs with the H 2 S donor GYY4137 reduced proinflammatory mediator production and significantly reduced viral replication, even when administered several hours after viral absorption. GYY4137 also significantly reduced replication and inflammatory chemokine production induced by human metapneumovirus (hMPV) and Nipah virus (NiV), suggesting a broad inhibitory effect of H 2 S on paramyxovirus infections. GYY4137 treatment had no effect on RSV genome replication or viral mRNA and protein synthesis, but it inhibited syncytium formation and virus assembly/release. GYY4137 inhibition of proinflammatory gene expression occurred by modulation of the activation of the key transcription factors nuclear factor κB (NF-κB) and interferon regulatory factor 3 (IRF-3) at a step subsequent to their nuclear translocation. H 2 S antiviral and immunoregulatory properties could represent a novel treatment strategy for paramyxovirus infections. IMPORTANCE RSV is a global health concern, causing significant morbidity and economic losses as well as mortality in developing countries. After decades of intensive research, no vaccine or effective treatment, with the exception of immunoprophylaxis, is available for this infection as well as for other important respiratory mucosal viruses. This study identifies hydrogen sulfide as a novel cellular mediator that can modulate viral replication and proinflammatory gene expression, both important determinants of lung injury in respiratory viral infections, with potential for rapid translation of such findings into novel therapeutic approaches for viral bronchiolitis and pneumonia.

Publisher

American Society for Microbiology

Subject

Virology,Insect Science,Immunology,Microbiology

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