The dynamics of water molecules near the protein surface are different from those of bulk water and influence the structure and dynamics of the protein itself. To elucidate the temperature dependence hydration dynamics of water molecules, we present results from the molecular dynamic simulation of the water molecules surrounding two proteins (Carboxypeptidase inhibitor and Ovomucoid) at seven different temperatures (T=273 to 303 K, in increments of 5 K). Translational diffusion coefficients of the surface water and bulk water molecules were estimated from 2 ns molecular dynamics simulation trajectories. Temperature dependence of the estimated bulk water diffusion closely reflects the experimental values, while hydration water diffusion is r...
Until a critical hydration level is reached, proteins do not function. This critical level of hydrat...
International audienceProteins are the molecular workhorses in a living organism. Their 3D structure...
International audienceProteins are the molecular workhorses in a living organism. Their 3D structure...
The effect of variation of the water model on the temperature dependence of protein and hydration wa...
Extensive molecular dynamics (MD) simulations have been used to characterize the multiple roles of w...
AbstractWe present results from an extensive molecular dynamics simulation study of water hydrating ...
Water at hydrophilic and hydrophobic groups interact differently with proteins. Particularly, hydrat...
Water at hydrophilic and hydrophobic groups interact differently with proteins. Particularly, hydrat...
Hydration water is the natural matrix of biological macromolecules and is essential for their activi...
AbstractWe present results from an extensive molecular dynamics simulation study of water hydrating ...
The dynamics of the hydration shell of the inhibitor barstar is analysed at low temperature (300–243...
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 ...
Extensive molecular dynamics (MD) simulations have been used to characterize the multiple roles of w...
Thermally driven rotational and translational diffusion of proteins and other biomolecules is govern...
Until a critical hydration level is reached, proteins do not function. This critical level of hydrat...
International audienceProteins are the molecular workhorses in a living organism. Their 3D structure...
International audienceProteins are the molecular workhorses in a living organism. Their 3D structure...
The effect of variation of the water model on the temperature dependence of protein and hydration wa...
Extensive molecular dynamics (MD) simulations have been used to characterize the multiple roles of w...
AbstractWe present results from an extensive molecular dynamics simulation study of water hydrating ...
Water at hydrophilic and hydrophobic groups interact differently with proteins. Particularly, hydrat...
Water at hydrophilic and hydrophobic groups interact differently with proteins. Particularly, hydrat...
Hydration water is the natural matrix of biological macromolecules and is essential for their activi...
AbstractWe present results from an extensive molecular dynamics simulation study of water hydrating ...
The dynamics of the hydration shell of the inhibitor barstar is analysed at low temperature (300–243...
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 ...
Extensive molecular dynamics (MD) simulations have been used to characterize the multiple roles of w...
Thermally driven rotational and translational diffusion of proteins and other biomolecules is govern...
Until a critical hydration level is reached, proteins do not function. This critical level of hydrat...
International audienceProteins are the molecular workhorses in a living organism. Their 3D structure...
International audienceProteins are the molecular workhorses in a living organism. Their 3D structure...