AbstractThe effect of 1,2-dioleoyl-sn-glycero-3-phosphoethanolamine (DOPE) in mixed membranes with 1-palmitoyl-2-oleoyl-sn-glycero-3-phosphocholine (POPC) on interaction with a class A amphipathic peptide, Ac-DWLKAFYDKVAEKLKEAF-NH2 (Ac-18A-NH2), was investigated. The fluorescence lifetime of 2-(9-anthroyloxy)stearic acid and 2H NMR spectra were used to evaluate the penetration of water molecules into the membrane interface and the order of lipid acyl chains, respectively. The results demonstrated that DOPE in the mixed membranes decreased the fluorescence lifetime and increased the acyl-chain order, and that Ac-18A-NH2 affected them more for membranes with higher DOPE fractions. The partition coefficient (Kp) of the peptide to the mixed mem...
Most linear peptides directly interact with membranes, but the mechanisms of interaction are far fro...
Most linear peptides directly interact with membranes, but the mechanisms of interaction are far fro...
AbstractThe human, multifunctional peptide LL-37 causes membrane disruption by distinctly different ...
AbstractThe effect of 1,2-dioleoyl-sn-glycero-3-phosphoethanolamine (DOPE) in mixed membranes with 1...
AbstractUsing lipid-specific fluorescent probes, we studied the effects of amphipathic helical, memb...
AbstractTo improve the understanding of the membrane uptake of an amphipathic and positively charged...
AbstractUsing lipid-specific fluorescent probes, we studied the effects of amphipathic helical, memb...
Most linear peptides directly interact with membranes, but the mechanisms of interaction are far fro...
AbstractWe studied the kinetics and equilibrium membrane binding of two amphipathic α-helical peptid...
A variety of amphiphilic helical peptides have been shown to exhibit a transition from adsorbing par...
Most linear peptides directly interact with membranes, but the mechanisms of interaction are far fro...
Most linear peptides directly interact with membranes, but the mechanisms of interaction are far fro...
Most linear peptides directly interact with membranes, but the mechanisms of interaction are far fro...
AbstractThis review is focused on peptide molecules which exhibit a limited solubility in the aqueou...
AbstractRelease of lipid vesicle content induced by the amphipathic peptide δ-lysin was investigated...
Most linear peptides directly interact with membranes, but the mechanisms of interaction are far fro...
Most linear peptides directly interact with membranes, but the mechanisms of interaction are far fro...
AbstractThe human, multifunctional peptide LL-37 causes membrane disruption by distinctly different ...
AbstractThe effect of 1,2-dioleoyl-sn-glycero-3-phosphoethanolamine (DOPE) in mixed membranes with 1...
AbstractUsing lipid-specific fluorescent probes, we studied the effects of amphipathic helical, memb...
AbstractTo improve the understanding of the membrane uptake of an amphipathic and positively charged...
AbstractUsing lipid-specific fluorescent probes, we studied the effects of amphipathic helical, memb...
Most linear peptides directly interact with membranes, but the mechanisms of interaction are far fro...
AbstractWe studied the kinetics and equilibrium membrane binding of two amphipathic α-helical peptid...
A variety of amphiphilic helical peptides have been shown to exhibit a transition from adsorbing par...
Most linear peptides directly interact with membranes, but the mechanisms of interaction are far fro...
Most linear peptides directly interact with membranes, but the mechanisms of interaction are far fro...
Most linear peptides directly interact with membranes, but the mechanisms of interaction are far fro...
AbstractThis review is focused on peptide molecules which exhibit a limited solubility in the aqueou...
AbstractRelease of lipid vesicle content induced by the amphipathic peptide δ-lysin was investigated...
Most linear peptides directly interact with membranes, but the mechanisms of interaction are far fro...
Most linear peptides directly interact with membranes, but the mechanisms of interaction are far fro...
AbstractThe human, multifunctional peptide LL-37 causes membrane disruption by distinctly different ...