The effects of temperature and urea denaturation (6M urea) on the dominant structures of the 20-residue Trp-cage mini-protein TC5b are investigated by molecular dynamics simulations of the protein at different temperatures in aqueous and in 6M urea solution using explicit solvent degrees of freedom and the GROMOS force-field parameter set 45A3. In aqueous solution at 278 K, TC5b is stable throughout the 20 ns of MD simulation and the trajectory structures largely agree with the NMR-NOE atom-atom distance data available. Raising the temperature to 360 K and to 400 K, the protein denatures within 22 ns and 3 ns, showing that the denaturation temperature is well below 360 K using the GROMOS force field. This is 40-90 K lower than the denaturat...
This thesis aims at understanding the molecular origins of urea-induced protein denaturation, in par...
AbstractUrea is a commonly used protein denaturant, and it is of great interest to determine its int...
While it is widely appreciated that the denatured state of a protein is a heterogeneous conformation...
The effects of temperature and urea denaturation (6M urea) on the dominant structures of the 20-resi...
The project will be focused on the denaturation of proteins by urea. It will be conducted using comp...
It is well known that folded proteins in water are destabilized by the addition of urea. When a prot...
Using a combination of experimental techniques (circular dichroism, differential scanning calorimetr...
In performing protein-denaturation experiments, it is common to employ different kinds of denaturant...
Correct folding is critical for the biological activities of proteins. As a contribution to a better...
AbstractIn performing protein-denaturation experiments, it is common to employ different kinds of de...
Molecular dynamics simulations of the DNA binding domain of 434 repressor are presented which aim at...
A molecular model for urea to be used in conjunction with the simple point charge (SPC) model for li...
Apart from biological functions, peptides are of uttermost importance as models for un- folded, dena...
Chemical denaturants are the most commonly used perturbation applied to study protein stability and ...
AbstractCorrect folding is critical for the biological activities of proteins. As a contribution to ...
This thesis aims at understanding the molecular origins of urea-induced protein denaturation, in par...
AbstractUrea is a commonly used protein denaturant, and it is of great interest to determine its int...
While it is widely appreciated that the denatured state of a protein is a heterogeneous conformation...
The effects of temperature and urea denaturation (6M urea) on the dominant structures of the 20-resi...
The project will be focused on the denaturation of proteins by urea. It will be conducted using comp...
It is well known that folded proteins in water are destabilized by the addition of urea. When a prot...
Using a combination of experimental techniques (circular dichroism, differential scanning calorimetr...
In performing protein-denaturation experiments, it is common to employ different kinds of denaturant...
Correct folding is critical for the biological activities of proteins. As a contribution to a better...
AbstractIn performing protein-denaturation experiments, it is common to employ different kinds of de...
Molecular dynamics simulations of the DNA binding domain of 434 repressor are presented which aim at...
A molecular model for urea to be used in conjunction with the simple point charge (SPC) model for li...
Apart from biological functions, peptides are of uttermost importance as models for un- folded, dena...
Chemical denaturants are the most commonly used perturbation applied to study protein stability and ...
AbstractCorrect folding is critical for the biological activities of proteins. As a contribution to ...
This thesis aims at understanding the molecular origins of urea-induced protein denaturation, in par...
AbstractUrea is a commonly used protein denaturant, and it is of great interest to determine its int...
While it is widely appreciated that the denatured state of a protein is a heterogeneous conformation...