Prunin suppresses viral IRES activity and is a potential candidate for treating enterovirus A71 infection
Saravanan Gunaseelan1, Kai Zhi Wong1, Nyo Min1
1Department of Microbiology and Immunology, National University of Singapore, Singapore 117597, Singapore.
Abstract:
Human enterovirus A71 (HEVA71) causes hand, foot, and mouth disease (HFMD) in young children and is considered a major neurotropic pathogen but lacks effective antivirals. To identify potential therapeutic agents against HFMD, we screened a 502-compound flavonoid library for compounds targeting the HEVA71 internal ribosome entry site (IRES) that facilitates translation of the HEVA71 genome and is vital for the production of HEVA71 viral particles. We validated hits using cell viability and viral plaque assays and found that prunin was the most potent inhibitor of HEVA71. Downstream assays affirmed that prunin disrupted viral protein and RNA synthesis and acted as a narrow-spectrum antiviral against enteroviruses A and B, but not enterovirus C, rhinovirus A, herpes simplex 1, or chikungunya virus. Continuous HEVA71 passaging with prunin yielded HEVA71-resistant mutants with five mutations that mapped to the viral IRES. Knockdown studies showed that the mutations allowed HEVA71 to overcome treatment-induced suppression by differentially regulating recruitment of the IRES trans-acting factors Sam68 and hnRNPK without affecting the hnRNPA1-IRES interaction required for IRES translation. Furthermore, prunin effectively reduced HEVA71-associated clinical symptoms and mortality in HEVA71-infected BALB/c mice and suppressed hepatitis C virus at higher concentrations, suggesting a similar mechanism of prunin-mediated IRES inhibition for both viruses. These studies establish prunin as a candidate for further development as a HEVA71 therapeutic agent.
Insights
Prunin shows promise as a novel antiviral for hand, foot, and mouth disease (HFMD) caused by Human enterovirus A71 (HEVA71). This compound effectively inhibits viral replication and reduces disease severity in mouse models.
Area of Science:
- Virology
- Drug Discovery
- Molecular Biology
Background:
- Human enterovirus A71 (HEVA71) is a significant cause of hand, foot, and mouth disease (HFMD) in children, with limited therapeutic options.
- The HEVA71 internal ribosome entry site (IRES) is crucial for viral replication and a potential drug target.
Purpose of the Study:
- To identify novel antiviral compounds targeting the HEVA71 IRES.
- To evaluate the efficacy and mechanism of action of identified compounds.
Main Methods:
- Screening of a 502-compound flavonoid library against HEVA71 IRES.
- Validation using cell viability and viral plaque assays.
- In vivo studies in a mouse model of HEVA71 infection.
Main Results:
- Prunin identified as a potent HEVA71 inhibitor, disrupting viral protein and RNA synthesis.
- Prunin demonstrated narrow-spectrum antiviral activity against enteroviruses A and B.
- HEVA71 resistance mutations mapped to the viral IRES, affecting IRES trans-acting factor recruitment.
- Prunin reduced clinical symptoms and mortality in HEVA71-infected mice.
Conclusions:
- Prunin is a promising candidate for developing new HEVA71 therapeutics.
- Prunin's mechanism involves targeting the viral IRES and modulating host factor interactions.
- Further development of prunin as an antiviral agent is warranted.
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