Water occupies typically 50% of a protein crystal and thus significantly contributes to the diffraction signal in crystallography experiments. Separating its contribution from that of the protein is, however, challenging because most water molecules are not localized and are thus difficult to assign to specific density peaks. The intricateness of the protein–water interface compounds this difficulty. This information has, therefore, not often been used to study biomolecular solvation. Here, we develop a methodology to surmount in part this difficulty. More specifically, we compare the solvent structure obtained from diffraction data for which experimental phasing is available to that obtained from constrained molecular dynamics (MD) simulat...
In protein simulation or structure refinement based on values of observable quantities measured in (...
Most proteins have evolved to function optimally in aqueous environments, and the interactions betwe...
We present an efficient and accurate theoretical description of the structural hydration of biologic...
Water occupies typically 50% of a protein crystal and thus significantly contributes to the diffract...
To compare ordered water positions from experiment with those from molecular dynamics (MD) simulatio...
To compare ordered water positions from experiment with those from molecular dynamics (MD) simulatio...
Water plays an essential role in most biological processes. Water molecules solvating biomolecules a...
Water and ions play a crucially important role in governing biomolecule structure, stability and fun...
Many proteins can be partially or completely disordered under physiological conditions. Structural c...
Based on molecular dynamics simulations of four globular proteins in dilute aqueous solution, with t...
Invariant water molecules that are of structural or functional importance to proteins are detected f...
Extensive molecular dynamics (MD) simulations have been used to characterize the multiple roles of w...
Understanding protein hydration is a crucial, and often underestimated issue, in unraveling protein ...
Water molecules play important roles in all biochemical processes. Therefore, it is of key importanc...
Water molecules play important roles in all biochemical processes. Therefore, it is of key importanc...
In protein simulation or structure refinement based on values of observable quantities measured in (...
Most proteins have evolved to function optimally in aqueous environments, and the interactions betwe...
We present an efficient and accurate theoretical description of the structural hydration of biologic...
Water occupies typically 50% of a protein crystal and thus significantly contributes to the diffract...
To compare ordered water positions from experiment with those from molecular dynamics (MD) simulatio...
To compare ordered water positions from experiment with those from molecular dynamics (MD) simulatio...
Water plays an essential role in most biological processes. Water molecules solvating biomolecules a...
Water and ions play a crucially important role in governing biomolecule structure, stability and fun...
Many proteins can be partially or completely disordered under physiological conditions. Structural c...
Based on molecular dynamics simulations of four globular proteins in dilute aqueous solution, with t...
Invariant water molecules that are of structural or functional importance to proteins are detected f...
Extensive molecular dynamics (MD) simulations have been used to characterize the multiple roles of w...
Understanding protein hydration is a crucial, and often underestimated issue, in unraveling protein ...
Water molecules play important roles in all biochemical processes. Therefore, it is of key importanc...
Water molecules play important roles in all biochemical processes. Therefore, it is of key importanc...
In protein simulation or structure refinement based on values of observable quantities measured in (...
Most proteins have evolved to function optimally in aqueous environments, and the interactions betwe...
We present an efficient and accurate theoretical description of the structural hydration of biologic...