We present a combination of semiempirical quantum-mechanical (SQM) calculations in the conductor-like screening model with the MM/GBSA (molecular-mechanics with generalized Born and surface-area solvation) method for ligand-binding affinity calculations. We test three SQM Hamiltonians, AM1, RM1, and PM6, as well as hydrogen-bond corrections and two different dispersion corrections. As test cases, we use the binding of seven biotin analogues to avidin, nine inhibitors to factor Xa, and nine phenol-derivatives to ferritin. The results vary somewhat for the three test cases, but a dispersion correction is mandatory to reproduce experimental estimates. On average, AM1 with the DH2 hydrogen-bond and dispersion corrections gives the best results,...
The calculation of binding affinities for flexible ligands has hitherto required the availability of...
Molecular Mechanics Poisson-Boltzmann Surface Area (MM-PBSA) and Molecular Mechanics Generalized Bor...
A method is suggested to calculate improved entropies within the MM/PBSA approach (molecular mechani...
Most drugs act on biomacromolecules. The Cost of developing new drugs is very high. A method to accu...
We have evaluated the efficiency of two popular end-point methods to calculate ligand-binding free e...
We present quantum chemical estimates of ligand-binding affinities performed, for the first time, at...
We tested different approaches to including the effect of binding-site water molecules for ligand-bi...
Introduction: The molecular mechanics energies combined with the Poisson-Boltzmann or generalized Bo...
We have compared the predictions of ligand-binding affinities from several methods based on end-poin...
One of the largest challenges of computational chemistry is calculation of accurate free energies fo...
The molecular mechanics/generalized Born surface area (MM/GBSA) method has been investigated with th...
<div><p>Virtual compound screening using molecular docking is widely used in the discovery of new le...
In this paper, we review our efforts to use quantum mechanical (QM) methods to improve free-energy e...
The most general way to improve the accuracy of binding-affinity calculations for protein-ligand sys...
The free energy of binding between avidin and seven biotin analogues has been calculated with the mo...
The calculation of binding affinities for flexible ligands has hitherto required the availability of...
Molecular Mechanics Poisson-Boltzmann Surface Area (MM-PBSA) and Molecular Mechanics Generalized Bor...
A method is suggested to calculate improved entropies within the MM/PBSA approach (molecular mechani...
Most drugs act on biomacromolecules. The Cost of developing new drugs is very high. A method to accu...
We have evaluated the efficiency of two popular end-point methods to calculate ligand-binding free e...
We present quantum chemical estimates of ligand-binding affinities performed, for the first time, at...
We tested different approaches to including the effect of binding-site water molecules for ligand-bi...
Introduction: The molecular mechanics energies combined with the Poisson-Boltzmann or generalized Bo...
We have compared the predictions of ligand-binding affinities from several methods based on end-poin...
One of the largest challenges of computational chemistry is calculation of accurate free energies fo...
The molecular mechanics/generalized Born surface area (MM/GBSA) method has been investigated with th...
<div><p>Virtual compound screening using molecular docking is widely used in the discovery of new le...
In this paper, we review our efforts to use quantum mechanical (QM) methods to improve free-energy e...
The most general way to improve the accuracy of binding-affinity calculations for protein-ligand sys...
The free energy of binding between avidin and seven biotin analogues has been calculated with the mo...
The calculation of binding affinities for flexible ligands has hitherto required the availability of...
Molecular Mechanics Poisson-Boltzmann Surface Area (MM-PBSA) and Molecular Mechanics Generalized Bor...
A method is suggested to calculate improved entropies within the MM/PBSA approach (molecular mechani...