We present an experimental study of the pore formation processes of small amphipathic peptides in model phosphocholine lipid membranes. We used atomic force microscopy to characterize the spatial organization and structure of alamethicin- and melittin- induced defects in lipid bilayer membranes and the influence of the peptide on local membrane properties. Alamethicin induced holes in gel DPPC membranes were directly visualized at different peptide concentrations. We found that the thermodynamic state of lipids in gel membranes can be influenced by the presence of alamethicin such that nanoscopic domains of fluid lipids form close to the peptide pores, and that the elastic constants of the membrane are altered in their vicinity. Melittin-in...
Cells depend on proper lipid transport and their precise distribution for vital cellular function. D...
Antimicrobial peptides (AMPs) interact with bacterial cell membranes through a variety of mechanisms...
AbstractA molecular dynamics simulation of melittin in a hydrated dipalmitoylphosphatidylcholine (DP...
AbstractWe present an experimental study of the pore formation processes of small amphipathic peptid...
ABSTRACT: Antimicrobial peptides are known to form pores in cell membranes. We study this process in...
AbstractA large variety of antimicrobial peptides have been shown to act, at least in vitro, by pora...
AbstractAntimicrobial peptides have two binding states in a lipid bilayer, a surface state S and a p...
Quantitative characterization of membrane defects (pores) is important for elucidating the molecular...
Quantitative characterization of membrane defects (pores) is important for elucidating the molecular...
Alamethicin adsorbs on the membrane surface at low peptide concentrations. However, above a critical...
A variety of amphiphilic helical peptides have been shown to exhibit a transition from adsorbing par...
Antimicrobial peptides are postulated to disrupt microbial phospholipid membranes. The prevailing mo...
AbstractAntimicrobial peptides (AMPs) are small, usually cationic peptides, which permeabilize biolo...
The reaction of fluorescence-labeled alamethicin with unilamellar phospholipid vesicles (DOPC and DM...
AbstractWe present a simulation study where different resolutions, namely coarse-grained (CG) and al...
Cells depend on proper lipid transport and their precise distribution for vital cellular function. D...
Antimicrobial peptides (AMPs) interact with bacterial cell membranes through a variety of mechanisms...
AbstractA molecular dynamics simulation of melittin in a hydrated dipalmitoylphosphatidylcholine (DP...
AbstractWe present an experimental study of the pore formation processes of small amphipathic peptid...
ABSTRACT: Antimicrobial peptides are known to form pores in cell membranes. We study this process in...
AbstractA large variety of antimicrobial peptides have been shown to act, at least in vitro, by pora...
AbstractAntimicrobial peptides have two binding states in a lipid bilayer, a surface state S and a p...
Quantitative characterization of membrane defects (pores) is important for elucidating the molecular...
Quantitative characterization of membrane defects (pores) is important for elucidating the molecular...
Alamethicin adsorbs on the membrane surface at low peptide concentrations. However, above a critical...
A variety of amphiphilic helical peptides have been shown to exhibit a transition from adsorbing par...
Antimicrobial peptides are postulated to disrupt microbial phospholipid membranes. The prevailing mo...
AbstractAntimicrobial peptides (AMPs) are small, usually cationic peptides, which permeabilize biolo...
The reaction of fluorescence-labeled alamethicin with unilamellar phospholipid vesicles (DOPC and DM...
AbstractWe present a simulation study where different resolutions, namely coarse-grained (CG) and al...
Cells depend on proper lipid transport and their precise distribution for vital cellular function. D...
Antimicrobial peptides (AMPs) interact with bacterial cell membranes through a variety of mechanisms...
AbstractA molecular dynamics simulation of melittin in a hydrated dipalmitoylphosphatidylcholine (DP...