AbstractWe present a computational model of the interaction between hydrophobic cations, such as the antimicrobial peptide, Magainin2, and membranes that include anionic lipids. The peptide’s amino acids were represented as two interaction sites: one corresponds to the backbone α-carbon and the other to the side chain. The membrane was represented as a hydrophobic profile, and its anionic nature was represented by a surface of smeared charges. Thus, the Coulombic interactions between the peptide and the membrane were calculated using the Gouy-Chapman theory that describes the electrostatic potential in the aqueous phase near the membrane. Peptide conformations and locations near the membrane, and changes in the membrane width, were sampled ...
In this work; we investigated the differential interaction of amphiphilic antimicrobial peptides wit...
AbstractExperimental studies of a number of antimicrobial peptides are sufficiently detailed to allo...
In this work; we investigated the differential interaction of amphiphilic antimicrobial peptides wit...
AbstractWe present a computational model of the interaction between hydrophobic cations, such as the...
AbstractWe introduce here a novel Monte Carlo simulation method for studying the interactions of hyd...
AbstractWe introduce here a novel Monte Carlo simulation method for studying the interactions of hyd...
Biophysical and structural investigations are presented with a focus on the membrane lipid interacti...
Experimental studies of a number of antimicrobial peptides are sufficiently detailed to allow comput...
AbstractThe membrane insertion behavior of two peptides, Magainin2 and M2δ, was investigated by appl...
Experimental studies of a number of antimicrobial peptides are sufficiently detailed to allow comput...
Experimental studies of a number of antimicrobial peptides are sufficiently detailed to allow comput...
Experimental studies of a number of antimicrobial peptides are sufficiently detailed to allow comput...
We used Monte Carlo simulations and biophysical measurements to study the interaction of NKCS, a der...
Experimental studies of a number of antimicrobial peptides are sufficiently detailed to allow comput...
Experimental studies of a number of antimicrobial peptides are sufficiently detailed to allow comput...
In this work; we investigated the differential interaction of amphiphilic antimicrobial peptides wit...
AbstractExperimental studies of a number of antimicrobial peptides are sufficiently detailed to allo...
In this work; we investigated the differential interaction of amphiphilic antimicrobial peptides wit...
AbstractWe present a computational model of the interaction between hydrophobic cations, such as the...
AbstractWe introduce here a novel Monte Carlo simulation method for studying the interactions of hyd...
AbstractWe introduce here a novel Monte Carlo simulation method for studying the interactions of hyd...
Biophysical and structural investigations are presented with a focus on the membrane lipid interacti...
Experimental studies of a number of antimicrobial peptides are sufficiently detailed to allow comput...
AbstractThe membrane insertion behavior of two peptides, Magainin2 and M2δ, was investigated by appl...
Experimental studies of a number of antimicrobial peptides are sufficiently detailed to allow comput...
Experimental studies of a number of antimicrobial peptides are sufficiently detailed to allow comput...
Experimental studies of a number of antimicrobial peptides are sufficiently detailed to allow comput...
We used Monte Carlo simulations and biophysical measurements to study the interaction of NKCS, a der...
Experimental studies of a number of antimicrobial peptides are sufficiently detailed to allow comput...
Experimental studies of a number of antimicrobial peptides are sufficiently detailed to allow comput...
In this work; we investigated the differential interaction of amphiphilic antimicrobial peptides wit...
AbstractExperimental studies of a number of antimicrobial peptides are sufficiently detailed to allo...
In this work; we investigated the differential interaction of amphiphilic antimicrobial peptides wit...