AbstractMolecular dynamics simulations of a ribonuclease A C-peptide analog and a sequence variant were performed in water at 277 and 300K and in 8M urea to clarify the molecular denaturation mechanism induced by urea and the early events in protein unfolding. Spectroscopic characterization of the peptides showed that the C-peptide analog had a high α-helical content, which was not the case for the variant. In the simulations, interdependent side-chain interactions were responsible for the high stability of the α-helical C-peptide analog in the different solvents. The other peptide displayed α-helical unwinding that propagated cooperatively toward the N-terminal. The conformations sampled by the peptides depended on their sequence and on th...
It is well known that folded proteins in water are destabilized by the addition of urea. When a prot...
It is well known that folded proteins in water are destabilized by the addition of urea. When a prot...
ABSTRACT: Urea, a polar molecule with a large dipole moment, not only destabilizes folded RNA struct...
AbstractMolecular dynamics simulations of a ribonuclease A C-peptide analog and a sequence variant w...
Urea is widely used as a protein denaturant in aqueous solutions. Experimental and computer simulati...
AbstractProteins are denatured in aqueous urea solution. The nature of the molecular driving forces ...
Most proteins at physiological conditions fold into a native functional three-dimensional conformat...
Most proteins at physiological conditions fold into a native functional three-dimensional conformat...
Abstract: The conformational equilibrium of a blocked valine peptide in water and aqueous urea solut...
The mechanism by which proteins are denatured by urea is still not well understood, especially on th...
Following the studies of urea denaturation of beta-hairpins using molecular dynamics, in this paper,...
The project will be focused on the denaturation of proteins by urea. It will be conducted using comp...
The project will be focused on the denaturation of proteins by urea. It will be conducted using comp...
Urea is widely used as a protein denaturant in aqueous solutions. Experimental and computer simulati...
Urea is widely used as protein denaturant in aqueous solutions. Experiments and computer simulation ...
It is well known that folded proteins in water are destabilized by the addition of urea. When a prot...
It is well known that folded proteins in water are destabilized by the addition of urea. When a prot...
ABSTRACT: Urea, a polar molecule with a large dipole moment, not only destabilizes folded RNA struct...
AbstractMolecular dynamics simulations of a ribonuclease A C-peptide analog and a sequence variant w...
Urea is widely used as a protein denaturant in aqueous solutions. Experimental and computer simulati...
AbstractProteins are denatured in aqueous urea solution. The nature of the molecular driving forces ...
Most proteins at physiological conditions fold into a native functional three-dimensional conformat...
Most proteins at physiological conditions fold into a native functional three-dimensional conformat...
Abstract: The conformational equilibrium of a blocked valine peptide in water and aqueous urea solut...
The mechanism by which proteins are denatured by urea is still not well understood, especially on th...
Following the studies of urea denaturation of beta-hairpins using molecular dynamics, in this paper,...
The project will be focused on the denaturation of proteins by urea. It will be conducted using comp...
The project will be focused on the denaturation of proteins by urea. It will be conducted using comp...
Urea is widely used as a protein denaturant in aqueous solutions. Experimental and computer simulati...
Urea is widely used as protein denaturant in aqueous solutions. Experiments and computer simulation ...
It is well known that folded proteins in water are destabilized by the addition of urea. When a prot...
It is well known that folded proteins in water are destabilized by the addition of urea. When a prot...
ABSTRACT: Urea, a polar molecule with a large dipole moment, not only destabilizes folded RNA struct...