In silico identification of potent protein inhibitors commonly requires prediction of a ligand binding free energy (BFE). Thermodynamics integration (TI) based on molecular dynamics (MD) simulations is a BFE calculation method capable of acquiring accurate BFE, but it is computationally expensive and time-consuming. In this work, we have developed an efficient automated workflow for identifying compounds with the lowest BFE among thousands of congeneric ligands, which requires only hundreds of TI calculations. Automated machine learning (AutoML) orchestrated by active learning (AL) in an AL–AutoML workflow allows unbiased and efficient search for a small set of best-performing molecules. We have applied this workflow to select inhibitors of...
Understanding binding mechanisms between enzymes and potential inhibitors and quantifying protein–li...
Despite the development of high-throughput computational methods able to screen very large libraries...
Binding affinity plays an important role in drug design. Accurate and fast prediction of binding fre...
In silico identification of potent protein inhibitors commonly requires prediction of a ligand bindi...
Drug discovery can be thought of as a search for a needle in a haystack: searching through a large c...
Designing tight-binding ligands is a primary objective of small-molecule drug discovery. Over the pa...
Molecular dynamics (MD) simulations are a promising tool to guide drug lead optimization. But becaus...
Drug discovery can be thought of as a search for a needle in a haystack: searching through a large c...
Among the available methods for predicting free energies of binding of ligands to a protein, the mol...
The early stages of drug design rely on hit discovery programs, where initial possible inhibitors’ b...
Computational modeling is an invaluable tool in the drug discovery process either for small ligand o...
The field of Computer Aided Drug Design (CADD) has experienced substantial developments over the las...
Nowadays, drug design projects benefit from highly accurate protein−ligand binding free energy predi...
Designing tight-binding ligands is a primary objective of small-molecule drug discovery. Over the pa...
Binding affinity prediction of potential drugs to target and off-target proteins is an essential ass...
Understanding binding mechanisms between enzymes and potential inhibitors and quantifying protein–li...
Despite the development of high-throughput computational methods able to screen very large libraries...
Binding affinity plays an important role in drug design. Accurate and fast prediction of binding fre...
In silico identification of potent protein inhibitors commonly requires prediction of a ligand bindi...
Drug discovery can be thought of as a search for a needle in a haystack: searching through a large c...
Designing tight-binding ligands is a primary objective of small-molecule drug discovery. Over the pa...
Molecular dynamics (MD) simulations are a promising tool to guide drug lead optimization. But becaus...
Drug discovery can be thought of as a search for a needle in a haystack: searching through a large c...
Among the available methods for predicting free energies of binding of ligands to a protein, the mol...
The early stages of drug design rely on hit discovery programs, where initial possible inhibitors’ b...
Computational modeling is an invaluable tool in the drug discovery process either for small ligand o...
The field of Computer Aided Drug Design (CADD) has experienced substantial developments over the las...
Nowadays, drug design projects benefit from highly accurate protein−ligand binding free energy predi...
Designing tight-binding ligands is a primary objective of small-molecule drug discovery. Over the pa...
Binding affinity prediction of potential drugs to target and off-target proteins is an essential ass...
Understanding binding mechanisms between enzymes and potential inhibitors and quantifying protein–li...
Despite the development of high-throughput computational methods able to screen very large libraries...
Binding affinity plays an important role in drug design. Accurate and fast prediction of binding fre...