Here we present a computational approach based on molecular dynamics (MD) simulation to study the dependence of the protein hydration-shell density on the size of the protein molecule. The hydration-shell density of eighteen different proteins, differing in size, shape and function (eight of them are antifreeze proteins), is calculated. The results obtained show that an increase in the hydration-shell density, relative to that of the bulk, is observed (in the range of 4-14%) for all studied proteins and that this increment strongly correlates with the protein size. In particular, a decrease in the density increment is observed for decreasing protein size. A simple model is proposed in which the basic idea is to approximate the protein molec...
Antifreeze proteins (AFPs) have the ability to inhibit ice growth by binding to ice nuclei. Their ic...
Antifreeze proteins (AFPs) have the ability to inhibit ice growth by binding to ice nuclei. Their ic...
We study the dynamics of hydration water/protein association in folded proteins using lysozyme and m...
Here we present a computational approach based on molecular dynamics (MD) simulation to study the de...
Here we present a computational approach based on molecular dynamics (MD) simulation to study the de...
Here we present a computational approach based on molecular dynamics (MD) simulation to study the hy...
In this paper we present a computational approach, based on NVT molecular dynamics trajectories, tha...
In this paper we present a computational approach, based on NVT molecular dynamics trajectories, tha...
In this paper we present a computational approach, based on NVT molecular dynamics trajectories, tha...
In this paper we present a computational approach, based on NVT molecular dynamics trajectories, tha...
Based on molecular dynamics simulations of four globular proteins in dilute aqueous solution, with t...
Based on molecular dynamics simulations of four globular proteins in dilute aqueous solution, with t...
AbstractProtein hydration plays an integral role in determining protein function and stability. We d...
AbstractThe experimental determination of protein compressibility reflects both the protein intrinsi...
The solvation layer surrounding a protein is clearly an intrinsic part of protein structure–dynamics...
Antifreeze proteins (AFPs) have the ability to inhibit ice growth by binding to ice nuclei. Their ic...
Antifreeze proteins (AFPs) have the ability to inhibit ice growth by binding to ice nuclei. Their ic...
We study the dynamics of hydration water/protein association in folded proteins using lysozyme and m...
Here we present a computational approach based on molecular dynamics (MD) simulation to study the de...
Here we present a computational approach based on molecular dynamics (MD) simulation to study the de...
Here we present a computational approach based on molecular dynamics (MD) simulation to study the hy...
In this paper we present a computational approach, based on NVT molecular dynamics trajectories, tha...
In this paper we present a computational approach, based on NVT molecular dynamics trajectories, tha...
In this paper we present a computational approach, based on NVT molecular dynamics trajectories, tha...
In this paper we present a computational approach, based on NVT molecular dynamics trajectories, tha...
Based on molecular dynamics simulations of four globular proteins in dilute aqueous solution, with t...
Based on molecular dynamics simulations of four globular proteins in dilute aqueous solution, with t...
AbstractProtein hydration plays an integral role in determining protein function and stability. We d...
AbstractThe experimental determination of protein compressibility reflects both the protein intrinsi...
The solvation layer surrounding a protein is clearly an intrinsic part of protein structure–dynamics...
Antifreeze proteins (AFPs) have the ability to inhibit ice growth by binding to ice nuclei. Their ic...
Antifreeze proteins (AFPs) have the ability to inhibit ice growth by binding to ice nuclei. Their ic...
We study the dynamics of hydration water/protein association in folded proteins using lysozyme and m...