In the context of advanced hit-to-lead drug design based on atomistic Molecular Dynamics simulations, we propose a dual topology alchemical approach for calculating the relative binding free energy (RBFE) between two chemically distant compounds. The method (termed NE-RBFE) relies on the enhanced sampling of the end-states in bulk and in the bound state via Hamiltonian Replica Exchange, alchemically connected by a series of independent and fast nonequilibrium (NE) simulations. The technique has been implemented in a bi-directional fashion, applying the Crooks theorem to the NE work distributions for RBFE predictions. The dissipation of the NE process, negatively affecting accuracy, has been minimized by introducing a smooth regularization b...
Binding free energy calculations serve as a physically rigorous approach to predict the potency of c...
Alchemical free energy methods use the computer to make unphysical changes to select atoms of a syst...
The fast-switching decoupling method is a powerful nonequilibrium technique to compute absolute bind...
We describe a step-by-step protocol for the computation of relative dissociation free energies with ...
Abstract Relative binding free energy calculations have become an integral computational tool for le...
Alchemical free energy methods are playing a growing role in molecular design, both for computer-aid...
Molecular dynamics simulations enable access to free energy differences governing the driving force ...
Calculating binding free energies with quan-tum-mechanical (QM) methods is notoriously time-consum-i...
Binding free energy calculations predict the potency of compounds to protein binding sites in a phys...
Free energy calculations based on molecular dynamics simulations show considerable promise for appli...
Alchemical free-energy methods based on molecular dynamics (MD) simulations have become important to...
Alchemical relative binding free energy calculations have recently found important applications in d...
In the companion article (Giovannelli et al., 10.1021/acs.jctc.7b00594), we presented an alchemical ...
Calculating binding free energies with quantum-mechanical (QM) methods is notoriously time-consuming...
We present an approach to performing alchemical binding free energies which we term coupled topologi...
Binding free energy calculations serve as a physically rigorous approach to predict the potency of c...
Alchemical free energy methods use the computer to make unphysical changes to select atoms of a syst...
The fast-switching decoupling method is a powerful nonequilibrium technique to compute absolute bind...
We describe a step-by-step protocol for the computation of relative dissociation free energies with ...
Abstract Relative binding free energy calculations have become an integral computational tool for le...
Alchemical free energy methods are playing a growing role in molecular design, both for computer-aid...
Molecular dynamics simulations enable access to free energy differences governing the driving force ...
Calculating binding free energies with quan-tum-mechanical (QM) methods is notoriously time-consum-i...
Binding free energy calculations predict the potency of compounds to protein binding sites in a phys...
Free energy calculations based on molecular dynamics simulations show considerable promise for appli...
Alchemical free-energy methods based on molecular dynamics (MD) simulations have become important to...
Alchemical relative binding free energy calculations have recently found important applications in d...
In the companion article (Giovannelli et al., 10.1021/acs.jctc.7b00594), we presented an alchemical ...
Calculating binding free energies with quantum-mechanical (QM) methods is notoriously time-consuming...
We present an approach to performing alchemical binding free energies which we term coupled topologi...
Binding free energy calculations serve as a physically rigorous approach to predict the potency of c...
Alchemical free energy methods use the computer to make unphysical changes to select atoms of a syst...
The fast-switching decoupling method is a powerful nonequilibrium technique to compute absolute bind...