Fragment-based lead discovery is becoming an increasingly popular strategy for drug discovery. Fragment screening identifies weakly binding compounds that require optimization to become high-affinity leads. As design of leads from fragments is challenging, reliable computational methods to guide optimization would be invaluable. We evaluated using molecular dynamics simulations and the free energy perturbation method (MD/FEP) in fragment optimization for the A2A adenosine receptor, a pharmaceutically relevant G protein-coupled receptor. Optimization of fragments exploring two binding site subpockets was probed by calculating relative binding affinities for 23 adenine derivatives, resulting in strong agreement with experimental data (R(2) = ...
Fragment-based drug discovery (FBDD) is an innovative approach, progressively more applied in the ac...
Fragment-based drug design is an established strategy of finding new drugs. Instead of doing mass sc...
The development of JAFS, a new computational method to study the binding geometries of small fragmen...
Fragment-based lead discovery is becoming an increasingly popular strategy for drug discovery. Fragm...
Fragment-based lead discovery is becoming an increasingly popular strategy for drug discovery. Fragm...
Fragment-based lead discovery (FBLD) holds great promise for drug discovery, but applications to G p...
Fragment-based lead discovery (FBLD) holds great promise for drug discovery, but applications to G p...
Fragment-based lead discovery (FBLD) is becoming an increasingly important method in drug developmen...
Fragment-based drug discovery relies on successful optimization of weakly binding ligands for affini...
We apply the hit-to-lead ESMACS (enhanced sampling of molecular dynamics with approximation of conti...
Fragment-based lead discovery (FBLD) holds great promise for drug discovery, but applications to G p...
Structure-driven fragment-based (SDFB) approaches have provided efficient methods for the identifica...
Fragment optimizations in nearly 150 fragment-based drug discovery programs reported in the literatu...
The four receptors that signal for adenosine, A1, A2A, A2B and A3 ARs, belong to the superfamily of ...
The rapid growth of structural information for G-protein-coupled receptors (GPCRs) has led to a grea...
Fragment-based drug discovery (FBDD) is an innovative approach, progressively more applied in the ac...
Fragment-based drug design is an established strategy of finding new drugs. Instead of doing mass sc...
The development of JAFS, a new computational method to study the binding geometries of small fragmen...
Fragment-based lead discovery is becoming an increasingly popular strategy for drug discovery. Fragm...
Fragment-based lead discovery is becoming an increasingly popular strategy for drug discovery. Fragm...
Fragment-based lead discovery (FBLD) holds great promise for drug discovery, but applications to G p...
Fragment-based lead discovery (FBLD) holds great promise for drug discovery, but applications to G p...
Fragment-based lead discovery (FBLD) is becoming an increasingly important method in drug developmen...
Fragment-based drug discovery relies on successful optimization of weakly binding ligands for affini...
We apply the hit-to-lead ESMACS (enhanced sampling of molecular dynamics with approximation of conti...
Fragment-based lead discovery (FBLD) holds great promise for drug discovery, but applications to G p...
Structure-driven fragment-based (SDFB) approaches have provided efficient methods for the identifica...
Fragment optimizations in nearly 150 fragment-based drug discovery programs reported in the literatu...
The four receptors that signal for adenosine, A1, A2A, A2B and A3 ARs, belong to the superfamily of ...
The rapid growth of structural information for G-protein-coupled receptors (GPCRs) has led to a grea...
Fragment-based drug discovery (FBDD) is an innovative approach, progressively more applied in the ac...
Fragment-based drug design is an established strategy of finding new drugs. Instead of doing mass sc...
The development of JAFS, a new computational method to study the binding geometries of small fragmen...