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Using Zebrafish Models of Human Influenza A Virus Infections to Screen Antiviral Drugs and Characterize Host Immune Cell Responses
Published on: January 20, 2017
Therapeutic strategy targeting host lipolysis limits infection by SARS-CoV-2 and influenza A virus
Yeong-Bin Baek1, Hyung-Jun Kwon2, Muhammad Sharif1
1Laboratory of Veterinary Pathology, College of Veterinary Medicine, Chonnam National University, Gwangju, 61186, Republic of Korea.
Abstract:
The biosynthesis of host lipids and/or lipid droplets (LDs) has been studied extensively as a putative therapeutic target in diverse viral infections. However, directly targeting the LD lipolytic catabolism in virus-infected cells has not been widely investigated. Here, we show the linkage of the LD-associated lipase activation to the breakdown of LDs for the generation of free fatty acids (FFAs) at the late stage of diverse RNA viral infections, which represents a broad-spectrum antiviral target. Dysfunction of membrane transporter systems due to virus-induced cell injury results in intracellular malnutrition at the late stage of infection, thereby making the virus more dependent on the FFAs generated from LD storage for viral morphogenesis and as a source of energy. The replication of SARS-CoV-2 and influenza A virus (IAV), which is suppressed by the treatment with LD-associated lipases inhibitors, is rescued by supplementation with FFAs. The administration of lipase inhibitors, either individually or in a combination with virus-targeting drugs, protects mice from lethal IAV infection and mitigates severe lung lesions in SARS-CoV-2-infected hamsters. Moreover, the lipase inhibitors significantly reduce proinflammatory cytokine levels in the lungs of SARS-CoV-2- and IAV-challenged animals, a cause of a cytokine storm important for the critical infection or mortality of COVID-19 and IAV patients. In conclusion, the results reveal that lipase-mediated intracellular LD lipolysis is commonly exploited to facilitate RNA virus replication and furthermore suggest that pharmacological inhibitors of LD-associated lipases could be used to curb current COVID-19- and future pandemic outbreaks of potentially troublesome RNA virus infection in humans.
Insights
Targeting lipid droplet breakdown with lipase inhibitors offers a broad-spectrum antiviral strategy. This approach combats diverse RNA viruses like SARS-CoV-2 and influenza A by blocking essential fatty acid production for viral replication.
Area of Science:
- Virology
- Molecular Biology
- Drug Discovery
Background:
- Host lipid metabolism, particularly lipid droplets (LDs), is a known target for antiviral therapies.
- Directly targeting LD lipolytic catabolism in virus-infected cells remains underexplored.
Purpose of the Study:
- To investigate the role of LD lipolysis in RNA viral infections.
- To identify LD-associated lipase activation as a broad-spectrum antiviral target.
Main Methods:
- Studied the activation of LD-associated lipases and LD breakdown during viral infections.
- Utilized lipase inhibitors to assess their impact on SARS-CoV-2 and influenza A virus (IAV) replication.
- Tested the efficacy of lipase inhibitors in mouse and hamster models of viral infection.
- Measured proinflammatory cytokine levels in infected animals treated with lipase inhibitors.
Main Results:
- LD lipolysis generates free fatty acids (FFAs) crucial for viral replication at late stages of infection.
- Inhibiting LD-associated lipases suppressed SARS-CoV-2 and IAV replication, an effect reversed by FFA supplementation.
- Lipase inhibitors protected animals from lethal IAV and mitigated lung lesions in SARS-CoV-2 infection.
- Treatment reduced proinflammatory cytokine levels, mitigating cytokine storm-related pathology.
Conclusions:
- Lipase-mediated LD lipolysis is a common mechanism exploited by RNA viruses for replication.
- Pharmacological inhibitors of LD-associated lipases represent a promising therapeutic strategy against current and future RNA virus pandemics, including COVID-19.
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