AbstractProtein structural analysis demonstrates that water molecules are commonly found in the internal cavities of proteins. Analysis of experimental data on the entropies of inorganic crystals suggests that the entropic cost of transferring such a water molecule to a protein cavity will not typically be greater than 7.0 cal/mol/K per water molecule, corresponding to a contribution of approximately +2.0 kcal/mol to the free energy. In this study, we employ the statistical mechanical method of inhomogeneous fluid solvation theory to quantify the enthalpic and entropic contributions of individual water molecules in 19 protein cavities across five different proteins. We utilize information theory to develop a rigorous estimate of the total t...
We use explicit solvent molecular dynamics simulations to estimate free energy, enthalpy, and entrop...
Water molecules play a vital role in biological and engineered systems by controlling intermolecular...
ABSTRACT: The mechanism (or mechanisms) of enthalpy− entropy (H/S) compensation in protein−ligand bi...
AbstractProtein structural analysis demonstrates that water molecules are commonly found in the inte...
Protein structural analysis demonstrates that water molecules are commonly found in the internal cav...
Complexes of the antibiotics novobiocin and clorobiocin with DNA gyrase are illustrative of the impo...
A fundamental understanding of biomolecular recognition is crucial to grasp complex processes in cel...
We use explicit solvent molecular dynamics simulations to estimate free energy, enthalpy, and entrop...
We use explicit solvent molecular dynamics simulations to estimate free energy, enthalpy, and entrop...
We use explicit solvent molecular dynamics simulations to estimate free energy, enthalpy, and entrop...
We use explicit solvent molecular dynamics simulations to estimate free energy, enthalpy, and entrop...
Complexes of the antibiotics novobiocin and clorobiocin with DNA gyrase are illustrative of the impo...
We use explicit solvent molecular dynamics simulations to estimate free energy, enthalpy, and entrop...
We use explicit solvent molecular dynamics simulations to estimate free energy, enthalpy, and entrop...
An information theory model is used to construct a molecular explanation why hydrophobic solvation e...
We use explicit solvent molecular dynamics simulations to estimate free energy, enthalpy, and entrop...
Water molecules play a vital role in biological and engineered systems by controlling intermolecular...
ABSTRACT: The mechanism (or mechanisms) of enthalpy− entropy (H/S) compensation in protein−ligand bi...
AbstractProtein structural analysis demonstrates that water molecules are commonly found in the inte...
Protein structural analysis demonstrates that water molecules are commonly found in the internal cav...
Complexes of the antibiotics novobiocin and clorobiocin with DNA gyrase are illustrative of the impo...
A fundamental understanding of biomolecular recognition is crucial to grasp complex processes in cel...
We use explicit solvent molecular dynamics simulations to estimate free energy, enthalpy, and entrop...
We use explicit solvent molecular dynamics simulations to estimate free energy, enthalpy, and entrop...
We use explicit solvent molecular dynamics simulations to estimate free energy, enthalpy, and entrop...
We use explicit solvent molecular dynamics simulations to estimate free energy, enthalpy, and entrop...
Complexes of the antibiotics novobiocin and clorobiocin with DNA gyrase are illustrative of the impo...
We use explicit solvent molecular dynamics simulations to estimate free energy, enthalpy, and entrop...
We use explicit solvent molecular dynamics simulations to estimate free energy, enthalpy, and entrop...
An information theory model is used to construct a molecular explanation why hydrophobic solvation e...
We use explicit solvent molecular dynamics simulations to estimate free energy, enthalpy, and entrop...
Water molecules play a vital role in biological and engineered systems by controlling intermolecular...
ABSTRACT: The mechanism (or mechanisms) of enthalpy− entropy (H/S) compensation in protein−ligand bi...