AbstractMotivated by a quasi-chemical view of protein hydration, we define specific hydration sites on the surface of globular proteins in terms of the local water density at each site relative to bulk water density. The corresponding kinetic definition invokes the average residence time for a water molecule at each site and the average time that site remains unoccupied. Bound waters are identified by high site occupancies using either definition. In agreement with previous molecular dynamics simulation studies, we find only a weak correlation between local water densities and water residence times for hydration sites on the surface of two globular proteins, lysozyme and staphylococcal nuclease. However, a strong correlation is obtained whe...
The solvation layer surrounding a protein is clearly an intrinsic part of protein structure–dynamics...
Based on molecular dynamics simulations of four globular proteins in dilute aqueous solution, with t...
Most proteins have evolved to function optimally in aqueous environments, and the interactions betwe...
AbstractMotivated by a quasi-chemical view of protein hydration, we define specific hydration sites ...
AbstractHydration sites are high-density regions in the three-dimensional time-averaged solvent stru...
The dynamics of water molecules near the protein surface are different from those of bulk water and ...
Biological water at the interface of proteins is critical to their equilibrium structures and enzyme...
AbstractThe experimental determination of protein compressibility reflects both the protein intrinsi...
Dielectric dispersion and NMRD experiments have revealed that a significant fraction of water molecu...
Hydration shell dynamics plays a critical role in protein folding and biochemical activity and has t...
AbstractWe present results from an extensive molecular dynamics simulation study of water hydrating ...
Dielectric dispersion and NMRD experiments have revealed that a significant fraction of water molecu...
Dielectric dispersion and NMRD experiments have revealed that a significant fraction of water molecu...
Hydration water on the surface of a protein is thought to mediate the thermodynamics of protein–liga...
Extensive molecular dynamics (MD) simulations have been used to characterize the multiple roles of w...
The solvation layer surrounding a protein is clearly an intrinsic part of protein structure–dynamics...
Based on molecular dynamics simulations of four globular proteins in dilute aqueous solution, with t...
Most proteins have evolved to function optimally in aqueous environments, and the interactions betwe...
AbstractMotivated by a quasi-chemical view of protein hydration, we define specific hydration sites ...
AbstractHydration sites are high-density regions in the three-dimensional time-averaged solvent stru...
The dynamics of water molecules near the protein surface are different from those of bulk water and ...
Biological water at the interface of proteins is critical to their equilibrium structures and enzyme...
AbstractThe experimental determination of protein compressibility reflects both the protein intrinsi...
Dielectric dispersion and NMRD experiments have revealed that a significant fraction of water molecu...
Hydration shell dynamics plays a critical role in protein folding and biochemical activity and has t...
AbstractWe present results from an extensive molecular dynamics simulation study of water hydrating ...
Dielectric dispersion and NMRD experiments have revealed that a significant fraction of water molecu...
Dielectric dispersion and NMRD experiments have revealed that a significant fraction of water molecu...
Hydration water on the surface of a protein is thought to mediate the thermodynamics of protein–liga...
Extensive molecular dynamics (MD) simulations have been used to characterize the multiple roles of w...
The solvation layer surrounding a protein is clearly an intrinsic part of protein structure–dynamics...
Based on molecular dynamics simulations of four globular proteins in dilute aqueous solution, with t...
Most proteins have evolved to function optimally in aqueous environments, and the interactions betwe...