The prediction of how a ligand binds to its target is an essential step for Structure-Based Drug Design (SBDD) methods. Molecular docking is a standard tool to predict the binding mode of a ligand to its macromolecular receptor and to quantify their mutual complementarity, with multiple applications in drug design. However, docking programs do not always find correct solutions, either because they are not sampled or due to inaccuracies in the scoring functions. Quantifying the docking performance in real scenarios is essential to understanding their limitations, managing expectations and guiding future developments. Here, we present a fully automated pipeline for pose prediction validated by participating in the Continuous Evaluation of Lig...
Abstract Structure-based drug design depends on the detailed knowledge of the three-dimensional (3D)...
Structure-based drug discovery uses information about the structure of a protein to identify novel l...
Motivation: Fast and accurate prediction of protein–ligand binding structures is indispensable for s...
The prediction of how a ligand binds to its target is an essential step for Structure-Based Drug Des...
Molecular docking is a computational tool commonly applied in drug discovery projects and fundament...
Molecular docking is a computational tool commonly applied in drug discovery projects and fundament...
Accurately predicting how a small molecule binds to its target protein is an essential requirement f...
International audienceThe 2015 D3R Grand Challenge provided an opportunity to test our new model for...
Prediction of the bound configuration of small-molecule ligands that differ substantially from the c...
Prediction of the bound configuration of small-molecule ligands that differ substantially from the c...
Prediction of the bound configuration of small-molecule ligands that differ substantially from the c...
In order for molecular docking to become a driving force in drug discovery, it should demonstrate a ...
The success of ligand docking calculations typically depends on the quality of the receptor structur...
Determination of the bound pose of a ligand is a critical first step in many in silico drug discover...
Abstract Molecular docking is a powerful tool in the field of computer-aided molecular design. I...
Abstract Structure-based drug design depends on the detailed knowledge of the three-dimensional (3D)...
Structure-based drug discovery uses information about the structure of a protein to identify novel l...
Motivation: Fast and accurate prediction of protein–ligand binding structures is indispensable for s...
The prediction of how a ligand binds to its target is an essential step for Structure-Based Drug Des...
Molecular docking is a computational tool commonly applied in drug discovery projects and fundament...
Molecular docking is a computational tool commonly applied in drug discovery projects and fundament...
Accurately predicting how a small molecule binds to its target protein is an essential requirement f...
International audienceThe 2015 D3R Grand Challenge provided an opportunity to test our new model for...
Prediction of the bound configuration of small-molecule ligands that differ substantially from the c...
Prediction of the bound configuration of small-molecule ligands that differ substantially from the c...
Prediction of the bound configuration of small-molecule ligands that differ substantially from the c...
In order for molecular docking to become a driving force in drug discovery, it should demonstrate a ...
The success of ligand docking calculations typically depends on the quality of the receptor structur...
Determination of the bound pose of a ligand is a critical first step in many in silico drug discover...
Abstract Molecular docking is a powerful tool in the field of computer-aided molecular design. I...
Abstract Structure-based drug design depends on the detailed knowledge of the three-dimensional (3D)...
Structure-based drug discovery uses information about the structure of a protein to identify novel l...
Motivation: Fast and accurate prediction of protein–ligand binding structures is indispensable for s...