Journal of Chemical Information and Modeling · 2020 · 17 citations · 48 references
Synthetic VirologyMolecular BiologyAntiviral DrugViral Structural ProteinNs5 MethyltransferaseMtase Binding SiteAntiviral Drug DevelopmentViral GeneticsBiochemistryNeurovirologyVirologyAntiviral CompoundBioinformaticsStructural BiologyNatural SciencesComputational BiologyDocked CompoundsMolecular Dynamics SimulationsSystems BiologyMedicineDrug Discovery
The NS5 methyltransferase (MTase) has been reported as an attractive molecular target for antivirals discovery against the Zika virus (ZIKV). Here, we report structure-based virtual screening of 42 390 structures from the Development Therapeutics Program (DTP) AIDS Antiviral Screen Database. Among the docked compounds, ZINC1652386 stood out due to its high affinity for MTase in comparison to the cocrystallized ligand MS2042, which interacts with the Asp146 residue in the MTase binding site by hydrogen bonding. Subsequent molecular dynamics simulations predicted that this compound forms a stable complex with MTase within 50 ns. Thus, ZINC1652386 may represent a promising ZIKV methyltransferase inhibitor.
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VMD: Visual molecular dynamics
William Humphrey, Andrew Dalke, Klaus Schulten · Journal of Molecular Graphics · 1996 · 64.1K citations
Engineering, Visual Molecular Dynamics, Molecular Biology +5
Scalable molecular dynamics with NAMD
J. C. Phillips, Rosemary Braun, Wei Wang et al. · Journal of Computational Chemistry · 2005 · 17.1K citations · Full text