AbstractWe introduce here a novel Monte Carlo simulation method for studying the interactions of hydrophobic peptides with lipid membranes. Each of the peptide’s amino acids is represented as two interaction sites: one corresponding to the backbone α-carbon and the other to the side chain, with the membrane represented as a hydrophobic profile. Peptide conformations and locations in the membrane and changes in the membrane width are sampled using the Metropolis criterion, taking into account the underlying energetics. Using this method we investigate the interactions between the hydrophobic peptide M2δ and a model membrane. The simulations show that starting from an extended conformation in the aqueous phase, the peptide first adsorbs onto ...
AbstractThe interaction of membranes with peptides and proteins is largely determined by their amphi...
Membrane proteins (MP) are a class of biomolecules responsible for important biological processes in...
AbstractThe insertion of the M2 transmembrane peptide from influenza A virus into a membrane has bee...
AbstractWe introduce here a novel Monte Carlo simulation method for studying the interactions of hyd...
AbstractWe present a computational model of the interaction between hydrophobic cations, such as the...
AbstractThe membrane insertion behavior of two peptides, Magainin2 and M2δ, was investigated by appl...
AbstractWe present a computational model of the interaction between hydrophobic cations, such as the...
AbstractM2δ, one of the transmembrane segments of the nicotinic acetylcholine receptor, is a 23-amin...
AbstractWe describe application of the implicit solvation model (see the first paper of this series)...
AbstractHydrophobic mismatch, which is the difference between the hydrophobic length of trans-membra...
AbstractWe describe an efficient solvation model for proteins. In this model atomic solvation parame...
AbstractWe describe application of the implicit solvation model (see the first paper of this series)...
AbstractThe interaction of α-helical peptides with lipid bilayers is central to our understanding of...
AbstractA three-dimensional structure of a model decapeptide is obtained by performing molecular dyn...
AbstractThe membrane insertion behavior of two peptides, Magainin2 and M2δ, was investigated by appl...
AbstractThe interaction of membranes with peptides and proteins is largely determined by their amphi...
Membrane proteins (MP) are a class of biomolecules responsible for important biological processes in...
AbstractThe insertion of the M2 transmembrane peptide from influenza A virus into a membrane has bee...
AbstractWe introduce here a novel Monte Carlo simulation method for studying the interactions of hyd...
AbstractWe present a computational model of the interaction between hydrophobic cations, such as the...
AbstractThe membrane insertion behavior of two peptides, Magainin2 and M2δ, was investigated by appl...
AbstractWe present a computational model of the interaction between hydrophobic cations, such as the...
AbstractM2δ, one of the transmembrane segments of the nicotinic acetylcholine receptor, is a 23-amin...
AbstractWe describe application of the implicit solvation model (see the first paper of this series)...
AbstractHydrophobic mismatch, which is the difference between the hydrophobic length of trans-membra...
AbstractWe describe an efficient solvation model for proteins. In this model atomic solvation parame...
AbstractWe describe application of the implicit solvation model (see the first paper of this series)...
AbstractThe interaction of α-helical peptides with lipid bilayers is central to our understanding of...
AbstractA three-dimensional structure of a model decapeptide is obtained by performing molecular dyn...
AbstractThe membrane insertion behavior of two peptides, Magainin2 and M2δ, was investigated by appl...
AbstractThe interaction of membranes with peptides and proteins is largely determined by their amphi...
Membrane proteins (MP) are a class of biomolecules responsible for important biological processes in...
AbstractThe insertion of the M2 transmembrane peptide from influenza A virus into a membrane has bee...