2019 · 11 citations · 29 references
Drug TargetEngineeringMachine LearningHit IdentificationMolecular BiologyChemistrySystems PharmacologyData ScienceDeep DockingComputational BiochemistryVirtual ScreeningMolecular SciencesAbstract Drug DiscoveryDe Novo Drug DesignMedicineDeep Learning ApproachDeep LearningPharmacologyMolecular Property PredictionBioinformaticsTarget PredictionComputational BiologyRational Drug DesignMolecular DockingSmall MoleculesDrug DiscoveryHigh-throughput Screening
ABSTRACT Drug discovery is an extensive and rigorous process that requires up to 2 billion dollars of investments and more than ten years of research and development to bring a molecule “from bench to a bedside”. While virtual screening can significantly enhance drug discovery workflow, it ultimately lags the current rate of expansion of chemical databases that already incorporate billions of purchasable compounds. This surge of available small molecules presents great opportunities for drug discovery but also demands for faster virtual screening methods and protocols. In order to address this challenge, we herein introduce Deep Docking ( D 2 ) - a novel deep learning-based approach which is suited for docking billions of molecular structures. The developed D 2 -platform utilizes quantitative structure-activity relationship (QSAR) based deep models trained on docking scores of subsets of a large chemical library (Big Base) to approximate the docking outcome for yet unprocessed molecular entries and to remove unfavorable structures in an iterative manner. We applied D 2 to virtually screen 1.36 billion molecules form the ZINC15 library against 12 prominent target proteins, and demonstrated up to 100-fold chemical data reduction and 6,000-fold enrichment for top hits, without notable loss of well-docked entities. The developed D 2 protocol can readily be used in conjunction with any docking program and was made publicly available.
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Molecular basis of agonism and antagonism in the oestrogen receptor
A.M. Brzozowski, A.C.W. Pike, Zbigniew Dauter et al. · Nature · 1997 · 3.3K citations
Oestrogen Receptor, Molecular Pharmacology, Signal Transduction +12
ZINC 15 – Ligand Discovery for Everyone
Teague Sterling, John J. Irwin · Journal of Chemical Information and Modeling · 2015 · 3.3K citations · Full text