AbstractUnderstanding the binding and insertion of peptides in lipid bilayers is a prerequisite for understanding phenomena such as antimicrobial activity and membrane-protein folding. We describe molecular dynamics simulations of the antimicrobial peptide alamethicin in lipid/water and octane/water environments, taking into account an external electric field to mimic the membrane potential. At cis-positive potentials, alamethicin does not insert into a phospholipid bilayer in 10ns of simulation, due to the slow dynamics of the peptide and lipids. However, in octane N-terminal insertion occurs at field strengths from 0.33V/nm and higher, in simulations of up to 100ns duration. Insertion of alamethicin occurs in two steps, corresponding to d...
Alamethicin adsorbs on the membrane surface at low peptide concentrations. However, above a critical...
AbstractExperimental studies of a number of antimicrobial peptides are sufficiently detailed to allo...
Alamethicin (Alm) is one of the most extensively studied membrane-active antibiotic peptides, but se...
AbstractUnderstanding the binding and insertion of peptides in lipid bilayers is a prerequisite for ...
AbstractAlamethicin is an α-helical channel-forming peptide, which inserts into lipid bilayers in a ...
Alamethicin is an α-helical peptide that forms voltage-activated ion channels. Experimental data sug...
AbstractAlamethicin is an amphipathic α-helical peptide that forms ion channels. An early event in c...
Alamethicin is a transmembrane ion channel at low concentration, and a lytic agent of cell membrane ...
AbstractAlamethicin is an α-helical channel-forming peptide, which inserts into lipid bilayers in a ...
Alamethicin adsorbs on the membrane surface at low peptide concentrations. However, above a critical...
AbstractAlamethicin is a 20-amino acid antibiotic peptide that forms voltage-gated ion channels in l...
Alamethicin is an α-helical peptide that forms voltage-activated ion channels. Experimental data sug...
A systematic molecular mechanics study of the alamethicin molecule was made to determine a set of lo...
Experimental studies of a number of antimicrobial peptides are sufficiently detailed to allow comput...
Whereas the barrel-stave configuration is accepted by most investigators as a good description of th...
Alamethicin adsorbs on the membrane surface at low peptide concentrations. However, above a critical...
AbstractExperimental studies of a number of antimicrobial peptides are sufficiently detailed to allo...
Alamethicin (Alm) is one of the most extensively studied membrane-active antibiotic peptides, but se...
AbstractUnderstanding the binding and insertion of peptides in lipid bilayers is a prerequisite for ...
AbstractAlamethicin is an α-helical channel-forming peptide, which inserts into lipid bilayers in a ...
Alamethicin is an α-helical peptide that forms voltage-activated ion channels. Experimental data sug...
AbstractAlamethicin is an amphipathic α-helical peptide that forms ion channels. An early event in c...
Alamethicin is a transmembrane ion channel at low concentration, and a lytic agent of cell membrane ...
AbstractAlamethicin is an α-helical channel-forming peptide, which inserts into lipid bilayers in a ...
Alamethicin adsorbs on the membrane surface at low peptide concentrations. However, above a critical...
AbstractAlamethicin is a 20-amino acid antibiotic peptide that forms voltage-gated ion channels in l...
Alamethicin is an α-helical peptide that forms voltage-activated ion channels. Experimental data sug...
A systematic molecular mechanics study of the alamethicin molecule was made to determine a set of lo...
Experimental studies of a number of antimicrobial peptides are sufficiently detailed to allow comput...
Whereas the barrel-stave configuration is accepted by most investigators as a good description of th...
Alamethicin adsorbs on the membrane surface at low peptide concentrations. However, above a critical...
AbstractExperimental studies of a number of antimicrobial peptides are sufficiently detailed to allo...
Alamethicin (Alm) is one of the most extensively studied membrane-active antibiotic peptides, but se...