Background Computational methods to predict binding affinities of small ligands toward relevant biological (off-)targets are helpful in prioritizing the screening and synthesis of new drug candidates, thereby speeding up the drug discovery process. However, use of ligand-based approaches can lead to erroneous predictions when structural and dynamic features of the target substantially affect ligand binding. Free energy methods for affinity computation can include steric and electrostatic protein–ligand interactions, solvent effects, and thermal fluctuations, but often they are computationally demanding and require a high level of supervision. As a result their application is typically limited to the screening of small sets of compounds by e...
The prediction of the binding affinity between a protein and ligands is one of the most challenging ...
The ability to accurately predict binding free energies from computer simulations is an invaluable r...
A recent method for estimating ligand binding affinities is extended. This method employs averages o...
Abstract Background Computational methods to predict binding affinities of small ligands toward rele...
Background: Computational methods to predict binding affinities of small ligands toward relevant bio...
Binding affinity prediction of potential drugs to target and off-target proteins is an essential ass...
Many limitations of current computer-aided drug design arise from the difficulty of reliably predict...
Predicting protein-ligand binding free energy from physical principles is a grand challenge in bioph...
Structure-based drug design could benefit greatly from computational methodologies that accurately p...
Computational tools are useful for studying biological systems with an atomistic level of detail. Th...
Designing tight-binding ligands is a primary objective of small-molecule drug discovery. Over the pa...
Computational protein binding affinity prediction can play an important role in drug research but pe...
Our goal is methods for predicting binding strengths, or binding free energies, between biomolecules...
Accurate ligand-protein binding affinity prediction, for a set of similar binders, is a major challe...
Nowadays, drug design projects benefit from highly accurate protein-ligand binding free energy predi...
The prediction of the binding affinity between a protein and ligands is one of the most challenging ...
The ability to accurately predict binding free energies from computer simulations is an invaluable r...
A recent method for estimating ligand binding affinities is extended. This method employs averages o...
Abstract Background Computational methods to predict binding affinities of small ligands toward rele...
Background: Computational methods to predict binding affinities of small ligands toward relevant bio...
Binding affinity prediction of potential drugs to target and off-target proteins is an essential ass...
Many limitations of current computer-aided drug design arise from the difficulty of reliably predict...
Predicting protein-ligand binding free energy from physical principles is a grand challenge in bioph...
Structure-based drug design could benefit greatly from computational methodologies that accurately p...
Computational tools are useful for studying biological systems with an atomistic level of detail. Th...
Designing tight-binding ligands is a primary objective of small-molecule drug discovery. Over the pa...
Computational protein binding affinity prediction can play an important role in drug research but pe...
Our goal is methods for predicting binding strengths, or binding free energies, between biomolecules...
Accurate ligand-protein binding affinity prediction, for a set of similar binders, is a major challe...
Nowadays, drug design projects benefit from highly accurate protein-ligand binding free energy predi...
The prediction of the binding affinity between a protein and ligands is one of the most challenging ...
The ability to accurately predict binding free energies from computer simulations is an invaluable r...
A recent method for estimating ligand binding affinities is extended. This method employs averages o...