Understanding molecular recognition of small molecules by proteins in atomistic detail is key for drug design. Molecular docking is a widely used computational method to mimic ligand-protein association in silico. However, predicting conformational changes occurring in proteins upon ligand binding is still a major challenge. Ensemble docking approaches address this issue by considering a set of different conformations of the protein obtained either experimentally or from computer simulations, e.g., molecular dynamics. However, holo structures prone to host (the correct) ligands are generally poorly sampled by standard molecular dynamics simulations of the apo protein. In order to address this limitation, we introduce a computational approac...
Accurate prediction of protein-ligand interactions and the associated binding affinity is a major ta...
Ensemble docking in drug discovery or chemical biology uses dynamical simulations of target proteins...
The capacity of proteins to adapt their structure in response to various perturbations including cov...
Understanding molecular recognition of small molecules by proteins in atomistic detail is key for dr...
Understanding molecular recognition of small molecules by proteins in atomistic detail is key for dr...
Understanding molecular recognition of small molecules by proteins in atomistic detail is key for dr...
Understanding molecular recognition of small molecules by proteins in atomistic detail is key for dr...
Understanding molecular recognition of small molecules by proteins in atomistic detail is key for dr...
Understanding molecular recognition of small molecules by proteins in atomistic detail is key for dr...
Quantitative understanding of molecular recognition is key for basic research and computer-aided dru...
Quantitative understanding of molecular recognition is key for basic research and computer-aided dru...
Quantitative understanding of molecular recognition is key for basic research and computer-aided dru...
Quantitative understanding of molecular recognition is key for basic research and computer-aided dru...
Understanding molecular recognition of small molecules by proteins in atomistic detail is key for d...
Proteins are dynamic molecules, and understanding their movements, especially as they relate to mole...
Accurate prediction of protein-ligand interactions and the associated binding affinity is a major ta...
Ensemble docking in drug discovery or chemical biology uses dynamical simulations of target proteins...
The capacity of proteins to adapt their structure in response to various perturbations including cov...
Understanding molecular recognition of small molecules by proteins in atomistic detail is key for dr...
Understanding molecular recognition of small molecules by proteins in atomistic detail is key for dr...
Understanding molecular recognition of small molecules by proteins in atomistic detail is key for dr...
Understanding molecular recognition of small molecules by proteins in atomistic detail is key for dr...
Understanding molecular recognition of small molecules by proteins in atomistic detail is key for dr...
Understanding molecular recognition of small molecules by proteins in atomistic detail is key for dr...
Quantitative understanding of molecular recognition is key for basic research and computer-aided dru...
Quantitative understanding of molecular recognition is key for basic research and computer-aided dru...
Quantitative understanding of molecular recognition is key for basic research and computer-aided dru...
Quantitative understanding of molecular recognition is key for basic research and computer-aided dru...
Understanding molecular recognition of small molecules by proteins in atomistic detail is key for d...
Proteins are dynamic molecules, and understanding their movements, especially as they relate to mole...
Accurate prediction of protein-ligand interactions and the associated binding affinity is a major ta...
Ensemble docking in drug discovery or chemical biology uses dynamical simulations of target proteins...
The capacity of proteins to adapt their structure in response to various perturbations including cov...