Journal of Medicinal Chemistry · 2022 · 19 citations · 31 references
Proteinlipid InteractionLimited Passive PermeabilityPharmaceutical ScienceLipid MovementMolecular RecognitionPassive PermeabilityBiophysicsProtein ChemistryPrmt5 InhibitorsBiochemistryMedicineMechanism Of ActionBiomolecular InteractionPharmacologyNanodiscRational Drug DesignParadoxical IncreaseMolecular DockingDrug Discovery
An imidazolone → triazolone replacement addressed the limited passive permeability of a series of protein arginine methyl transferase 5 (PRMT5) inhibitors. This increase in passive permeability was unexpected given the increase in the hydrogen bond acceptor (HBA) count and topological polar surface area (TPSA), two descriptors that are typically inversely correlated with permeability. Quantum mechanics (QM) calculations revealed that this unusual effect was due to an electronically driven disconnect between TPSA and 3D-PSA, which manifests in a reduction in overall HBA strength as indicated by the HBA moment descriptor from COSMO-RS (conductor-like screening model for real solvation). HBA moment was subsequently deployed as a design parameter leading to the discovery of inhibitors with not only improved passive permeability but also reduced P-glycoprotein (P-gp) transport. Our case study suggests that hidden polarity as quantified by TPSA-3DPSA can be rationally designed through QM calculations.
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Christopher A. Lipinski, Franco Lombardo, Beryl W. Dominy et al. · Advanced Drug Delivery Reviews · 1997 · 11K citations
Development Settings, Pharmaceutical Science, Drug Target +8
Improved side‐chain torsion potentials for the Amber ff99SB protein force field
Kresten Lindorff‐Larsen, Stefano Piana, Kim Palmö et al. · Proteins Structure Function and Bioinformatics · 2010 · 6.1K citations · Full text
Side‐chain Torsion Potentials, Protein Assembly, Biomolecular Structure Prediction +16