For an effective drug, strong binding to the target protein is a prerequisite, but it is not enough. To produce a particular functional response, drugs need to either block the proteins’ functions or modulate their activities by changing their conformational equilibrium. The binding free energy of a compound to its target is routinely calculated, but the timescales for the protein conformational changes are prohibitively long to be efficiently modeled via physics-based simulations. Thermodynamic principles suggest that the binding free energies of the ligands with different receptor conformations may infer their efficacy. However, this hypothesis has not been thoroughly validated. We present an actionable protocol and a comprehensive study ...
Occluded ligand-binding pockets (LBP) such as those found in nuclear receptors (NR) and G-protein co...
Docking algorithms for computer-aided drug discovery and design often ignore or restrain the flexibi...
Predicting protein-ligand binding free energy from physical principles is a grand challenge in bioph...
ABSTRACT: A coherent framework is presented for determing the free energy change accompanying ligand...
AbstractThe conformation adopted by a ligand on binding to a receptor may differ from its lowest-ene...
The present commentary surveys the methods for obtaining the thermodynamic parameters of the drug-re...
Determination of drug-receptor binding constants (association, KA, or dissociation, KD = l/KA) by ra...
Transmembranal G Protein-Coupled Receptors (GPCRs) transduce extracellular chemical signals to the c...
AbstractAccurate free-energy calculations provide mechanistic insights into molecular recognition an...
Experimental techniques that directly assess the thermodynamics of ligand–receptor or ligand–enzyme ...
Biochemical signaling is mediated by complexes between macromolecular receptors and their ligands, w...
The key objectives of computational structure-based drug design include the prediction of the protei...
The theory of receptor–ligand binding equilibria has long been well-established in biochemistry, and...
Simple determination of K(A) or K(D) values makes it possible to calculate the standard free energy ...
Binding affinity plays an important role in drug design. Accurate and fast prediction of binding fre...
Occluded ligand-binding pockets (LBP) such as those found in nuclear receptors (NR) and G-protein co...
Docking algorithms for computer-aided drug discovery and design often ignore or restrain the flexibi...
Predicting protein-ligand binding free energy from physical principles is a grand challenge in bioph...
ABSTRACT: A coherent framework is presented for determing the free energy change accompanying ligand...
AbstractThe conformation adopted by a ligand on binding to a receptor may differ from its lowest-ene...
The present commentary surveys the methods for obtaining the thermodynamic parameters of the drug-re...
Determination of drug-receptor binding constants (association, KA, or dissociation, KD = l/KA) by ra...
Transmembranal G Protein-Coupled Receptors (GPCRs) transduce extracellular chemical signals to the c...
AbstractAccurate free-energy calculations provide mechanistic insights into molecular recognition an...
Experimental techniques that directly assess the thermodynamics of ligand–receptor or ligand–enzyme ...
Biochemical signaling is mediated by complexes between macromolecular receptors and their ligands, w...
The key objectives of computational structure-based drug design include the prediction of the protei...
The theory of receptor–ligand binding equilibria has long been well-established in biochemistry, and...
Simple determination of K(A) or K(D) values makes it possible to calculate the standard free energy ...
Binding affinity plays an important role in drug design. Accurate and fast prediction of binding fre...
Occluded ligand-binding pockets (LBP) such as those found in nuclear receptors (NR) and G-protein co...
Docking algorithms for computer-aided drug discovery and design often ignore or restrain the flexibi...
Predicting protein-ligand binding free energy from physical principles is a grand challenge in bioph...