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Multi-target Parallel Processing Approach for Gene-to-structure Determination of the Influenza Polymerase PB2 Subunit
Published on: June 28, 2013
A dual drug regimen synergistically blocks human parainfluenza virus infection
Benjamin Bailly1,2, Larissa Dirr1, Ibrahim M El-Deeb1
1Institute for Glycomics, Gold Coast Campus, Griffith University, Gold Coast, 4222, Australia.
Insights
The drug suramin inhibits human parainfluenza type-3 virus (hPIV-3) replication by targeting its haemagglutinin-neuraminidase (HN) protein. Suramin also shows synergistic effects with zanamivir, suggesting a potential combination therapy for hPIV-3 infections.
Area of Science:
- Virology
- Drug Discovery
- Structural Biology
Background:
- Human parainfluenza type-3 virus (hPIV-3) causes severe respiratory illness in infants, elderly, and immunocompromised individuals.
- Currently, no specific therapies or vaccines exist for hPIV-3 infections.
Purpose of the Study:
- To investigate the potential of the approved drug suramin as an antiviral agent against hPIV-3.
- To explore combination therapy strategies for hPIV-3 using suramin and other antiviral drugs.
Main Methods:
- In vitro inhibition assays to assess suramin's effect on hPIV-3 haemagglutinin-neuraminidase (HN).
- Cell-based assays to measure viral replication inhibition and drug synergy.
- NMR spectroscopy and in silico docking simulations to determine suramin-HN binding interactions.
Main Results:
- Suramin demonstrated non-competitive inhibition of hPIV-3 HN in vitro.
- Suramin inhibited viral replication in mammalian cells with an IC50 of 30 μM.
- Suramin exhibited synergistic antiviral activity when combined with zanamivir, allowing for lower effective drug concentrations.
Conclusions:
- Suramin is a potent inhibitor of hPIV-3 replication, acting on the HN protein.
- The combination of suramin and zanamivir shows promise for treating hPIV-3 infections.
- Drug repurposing of approved medications offers a viable strategy for developing novel antiviral therapies.
Abstract:
Human parainfluenza type-3 virus (hPIV-3) is one of the principal aetiological agents of acute respiratory illness in infants worldwide and also shows high disease severity in the elderly and immunocompromised, but neither therapies nor vaccines are available to treat or prevent infection, respectively. Using a multidisciplinary approach we report herein that the approved drug suramin acts as a non-competitive in vitro inhibitor of the hPIV-3 haemagglutinin-neuraminidase (HN). Furthermore, the drug inhibits viral replication in mammalian epithelial cells with an IC50 of 30 μM, when applied post-adsorption. Significantly, we show in cell-based drug-combination studies using virus infection blockade assays, that suramin acts synergistically with the anti-influenza virus drug zanamivir. Our data suggests that lower concentrations of both drugs can be used to yield high levels of inhibition. Finally, using NMR spectroscopy and in silico docking simulations we confirmed that suramin binds HN simultaneously with zanamivir. This binding event occurs most likely in the vicinity of the protein primary binding site, resulting in an enhancement of the inhibitory potential of the N-acetylneuraminic acid-based inhibitor. This study offers a potentially exciting avenue for the treatment of parainfluenza infection by a combinatorial repurposing approach of well-established approved drugs.
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