We present quantum chemical estimates of ligand-binding affinities performed, for the first time, at a level of theory for which there is a hope that dispersion and polarization effects are properly accounted for (MP2/cc-pVTZ) and at the same time effects of solvation, entropy, and sampling are included. We have studied the binding of seven biotin analogues to the avidin tetramer. The calculations have been performed by the recently developed PMISP approach (polarizable multipole interactions with supermolecular pairs), which treats electrostatic interactions by multipoles up to quadrupoles, induction by anisotropic polarizabilities, and nonclassical interactions (dispersion, exchange repulsion, etc.) by explicit quantum chemical calculatio...
The most general way to improve the accuracy of binding-affinity calculations for protein-ligand sys...
CONSPECTUS: Quantum mechanics (QM) has revolutionized our understanding of the structure and reactiv...
We report a combined molecular dynamics and quantum mechanics (QM)/molecular mechanics (MM) analysis...
It is still impossible to make an accurate, purely theoretical prediction of the free energy of a li...
In this paper, we review our efforts to use quantum mechanical (QM) methods to improve free-energy e...
We have developed a method to estimate accurate interaction energies between a full protein and a bo...
We present a combination of semiempirical quantum-mechanical (SQM) calculations in the conductor-lik...
A new method to accurately estimate the interaction energy between a large molecule and a smaller li...
The authors describe a quantum mechanics/molecular mechanics/Poisson-Boltzmann-surface area model fo...
The authors describe a quantum mechanics/molecular mechanics/Poisson-Boltzmann-surface area model fo...
The authors describe a quantum mechanics/molecular mechanics/Poisson-Boltzmann-surface area model fo...
The authors describe a quantum mechanics/molecular mechanics/Poisson-Boltzmann-surface area model fo...
We have compared the predictions of ligand-binding affinities from several methods based on end-poin...
Continuum solvation methods are frequently used to increase the efficiency of computational methods ...
We report a combined molecular dynamics and quantum mechanics (QM)/molecular mechanics (MM) analysis...
The most general way to improve the accuracy of binding-affinity calculations for protein-ligand sys...
CONSPECTUS: Quantum mechanics (QM) has revolutionized our understanding of the structure and reactiv...
We report a combined molecular dynamics and quantum mechanics (QM)/molecular mechanics (MM) analysis...
It is still impossible to make an accurate, purely theoretical prediction of the free energy of a li...
In this paper, we review our efforts to use quantum mechanical (QM) methods to improve free-energy e...
We have developed a method to estimate accurate interaction energies between a full protein and a bo...
We present a combination of semiempirical quantum-mechanical (SQM) calculations in the conductor-lik...
A new method to accurately estimate the interaction energy between a large molecule and a smaller li...
The authors describe a quantum mechanics/molecular mechanics/Poisson-Boltzmann-surface area model fo...
The authors describe a quantum mechanics/molecular mechanics/Poisson-Boltzmann-surface area model fo...
The authors describe a quantum mechanics/molecular mechanics/Poisson-Boltzmann-surface area model fo...
The authors describe a quantum mechanics/molecular mechanics/Poisson-Boltzmann-surface area model fo...
We have compared the predictions of ligand-binding affinities from several methods based on end-poin...
Continuum solvation methods are frequently used to increase the efficiency of computational methods ...
We report a combined molecular dynamics and quantum mechanics (QM)/molecular mechanics (MM) analysis...
The most general way to improve the accuracy of binding-affinity calculations for protein-ligand sys...
CONSPECTUS: Quantum mechanics (QM) has revolutionized our understanding of the structure and reactiv...
We report a combined molecular dynamics and quantum mechanics (QM)/molecular mechanics (MM) analysis...