AbstractLipid membranes manifest a diverse array of surface forces that can fold and orient an approaching protein. To better understand these forces and their ability to influence protein function, we have used infrared spectroscopy with isotopic editing to characterize the 37-residue membrane-active antimicrobial polypeptide cecropin A as it approached, adsorbed onto, and finally penetrated various lipid membranes. Intermediate stages in this process were isolated for study by the use of internal reflection and Langmuir trough techniques. Results indicate that this peptide adopts well-ordered secondary structure while superficially adsorbed to a membrane surface. Its conformation is predominantly α-helical, although some β structure is li...
AbstractLinear peptide antibiotics have been isolated from amphibians, insects and humans and used a...
Cecropins are a group of cationic, antibacterial peptides which were initially isolated fi om the in...
The extent of matching of membrane hydrophobic thickness with the hydrophobic length of transmembran...
AbstractLipid membranes manifest a diverse array of surface forces that can fold and orient an appro...
Cecropin A is a naturally occurring, linear, cationic, 37-residue antimicrobial peptide. The precise...
The solution structure of a custom lytic peptide, cecropin B3 (CB3), having two identical hydrophobi...
An understanding of the mechanism of action of antimicrobial peptides is fundamental to the developm...
AbstractAntimicrobial peptides (AMPs) have received considerable interest as a source of new antibio...
AbstractWhile antimicrobial and cytolytic peptides exert their effects on cells largely by interacti...
The importance of small molecular weight antimicrobial peptides as novel therapeutic agents stems fr...
An understanding of the mechanism of action of antimicrobial peptides is fundamental to the developm...
Peptide-lipid interactions support a variety of biological functions. Of particular interest are 19 ...
AbstractThe orientation of the insect antibiotic peptide cecropin A (CecA) in the phospholipid bilay...
AbstractThe interaction of antimicrobial peptides with membranes is a key factor in determining thei...
AbstractThe folding and function of membrane proteins is controlled not only by specific but also by...
AbstractLinear peptide antibiotics have been isolated from amphibians, insects and humans and used a...
Cecropins are a group of cationic, antibacterial peptides which were initially isolated fi om the in...
The extent of matching of membrane hydrophobic thickness with the hydrophobic length of transmembran...
AbstractLipid membranes manifest a diverse array of surface forces that can fold and orient an appro...
Cecropin A is a naturally occurring, linear, cationic, 37-residue antimicrobial peptide. The precise...
The solution structure of a custom lytic peptide, cecropin B3 (CB3), having two identical hydrophobi...
An understanding of the mechanism of action of antimicrobial peptides is fundamental to the developm...
AbstractAntimicrobial peptides (AMPs) have received considerable interest as a source of new antibio...
AbstractWhile antimicrobial and cytolytic peptides exert their effects on cells largely by interacti...
The importance of small molecular weight antimicrobial peptides as novel therapeutic agents stems fr...
An understanding of the mechanism of action of antimicrobial peptides is fundamental to the developm...
Peptide-lipid interactions support a variety of biological functions. Of particular interest are 19 ...
AbstractThe orientation of the insect antibiotic peptide cecropin A (CecA) in the phospholipid bilay...
AbstractThe interaction of antimicrobial peptides with membranes is a key factor in determining thei...
AbstractThe folding and function of membrane proteins is controlled not only by specific but also by...
AbstractLinear peptide antibiotics have been isolated from amphibians, insects and humans and used a...
Cecropins are a group of cationic, antibacterial peptides which were initially isolated fi om the in...
The extent of matching of membrane hydrophobic thickness with the hydrophobic length of transmembran...