<div><p>Using molecular dynamics (MD) simulations, the density of single proteins and its temperature dependence was modelled starting from the experimentally determined protein structure and a generic, transferable force field, without the need of prior parameterization. Although all proteins consist of the same 20 amino acids, their density in aqueous solution varies up to 10% and the thermal expansion coefficient up to twofold. To model the protein density, systematic MD simulations were carried out for 10 proteins with a broad range of densities (1.32–1.43 g/cm<sup>3</sup>) and molecular weights (7–97 kDa). The simulated densities deviated by less than 1.4% from their experimental values that were available for four proteins. Further an...
Proteins are the media through which genetic information is expressed. They are involved in most if ...
WOS: 000243623700018In this study additional heat capacity of the proteins in water dissociation hav...
In the attempt to clarify possible mechanisms underlying thermal stability of proteins, we study th...
[[abstract]]In this study, the thermostability of proteins was studied using the molecular dynamics ...
Proteins are one of the most important families of biological macromolecules. Proteins can assume ma...
Proteins are one of the most important families of biological macromolecules. Proteins can assume ma...
ABSTRACT Molecular dynamics simulations of protein folding and unfolding are often carried out at te...
The heat capacity has played a major role in relating microscopic and macroscopic properties of prot...
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 de...
AbstractMolecular dynamics simulations of protein folding and unfolding are often carried out at tem...
AbstractA novel method has been implemented to compute the density of states of proteins. A united a...
A Monte Carlo simulation with a coarse-grained (CGMC) model of protein involving a phenomenological ...
A Monte Carlo simulation with a coarse-grained (CGMC) model of protein involving a phenomenological ...
Proteins are the media through which genetic information is expressed. They are involved in most if ...
WOS: 000243623700018In this study additional heat capacity of the proteins in water dissociation hav...
In the attempt to clarify possible mechanisms underlying thermal stability of proteins, we study th...
[[abstract]]In this study, the thermostability of proteins was studied using the molecular dynamics ...
Proteins are one of the most important families of biological macromolecules. Proteins can assume ma...
Proteins are one of the most important families of biological macromolecules. Proteins can assume ma...
ABSTRACT Molecular dynamics simulations of protein folding and unfolding are often carried out at te...
The heat capacity has played a major role in relating microscopic and macroscopic properties of prot...
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 de...
AbstractMolecular dynamics simulations of protein folding and unfolding are often carried out at tem...
AbstractA novel method has been implemented to compute the density of states of proteins. A united a...
A Monte Carlo simulation with a coarse-grained (CGMC) model of protein involving a phenomenological ...
A Monte Carlo simulation with a coarse-grained (CGMC) model of protein involving a phenomenological ...
Proteins are the media through which genetic information is expressed. They are involved in most if ...
WOS: 000243623700018In this study additional heat capacity of the proteins in water dissociation hav...
In the attempt to clarify possible mechanisms underlying thermal stability of proteins, we study th...