SARS-CoV-2 recently jumped species and rapidly spread via human-to-human transmission to cause a global outbreak of COVID-19. The lack of effective vaccine combined with the severity of the disease necessitates attempts to develop small molecule drugs to combat the virus. COVID19_GIST_HSA is a freely available online repository to provide solvation thermodynamic maps of COVID-19-related protein small molecule drug targets. Grid Inhomogeneous Solvation Theory maps were generated using AmberTools cpptraj-GIST and Hydration Site Analysis maps were created using SSTmap code. The resultant data can be applied to drug design efforts: scoring solvent displacement for docking, rational lead modification, prioritization of ligand- and protein- based pharmacophore elements, and creation of water-based pharmacophores. Herein, we demonstrate the use of the solvation thermodynamic mapping data. It is hoped that this freely provided data will aid in small molecule drug discovery efforts to defeat SARS-CoV-2.
Keyphrases
- sars cov
- small molecule
- molecular dynamics
- protein protein
- molecular dynamics simulations
- ionic liquid
- respiratory syndrome coronavirus
- endothelial cells
- drug discovery
- electronic health record
- coronavirus disease
- molecular docking
- big data
- induced pluripotent stem cells
- drug induced
- adverse drug
- social media
- aqueous solution
- health information
- high density
- mass spectrometry