AbstractBoth natural and synthetic polycations can induce demixing of negatively charged components in artificial and possibly in natural membranes. This process can result in formation of clusters (binding of several components to a polycation chain) and/or domains (aggregation of clusters and formation of a separate phase enriched in some particular component). In order to distinguish between these two phenomena, a model lipid membrane system containing ion channels, formed by a negatively charged peptide, O-pyromellitylgramicidin, and polycations of different structures was used. Microelectrophoresis of liposomes, changes in boundary potential of planar bilayers, the shape of compression curves and potentials of lipid and lipid/peptide m...
Membrane-active peptides have potential as drug delivery tools for control of lipid bilayer structur...
AbstractPoly-L-lysine-induced morphological changes in liquid phase supported bilayers consisting of...
AbstractPositively charged polybasic domains are essential for recruiting multiple signaling protein...
AbstractBoth natural and synthetic polycations can induce demixing of negatively charged components ...
AbstractFunctioning of membrane proteins, in particular ionic channels, can be modulated by alterati...
AbstractInteraction of small unilamellar vesicles (SUVs), composed of negative diphosphatidylglycero...
AbstractSmall (40–60 nm in diameter) and large (300–350 nm) negative vesicles were complexed with a ...
AbstractFunctioning of membrane proteins, in particular ionic channels, can be modulated by alterati...
AbstractProteoliposomes were prepared by making bilayer vesicles from neutral egg yolk lecithin and ...
AbstractAggregation of the negatively charged liposomes caused by the addition of the linear polycat...
AbstractPeripheral proteins can trigger the formation of domains in mixed fluid-like lipid membranes...
AbstractNegatively-charged polysialic acid (polySia) chains are usually membrane-bound and are often...
AbstractEffect of a cationic polymer, poly(l-lysine), on the kinetic properties of ionic channels fo...
AbstractThere has been increasing interest in recent years in describing the lateral organization of...
AbstractPlantaricin A (plA) is a 26-residue bacteria-produced peptide pheromone with membrane-permea...
Membrane-active peptides have potential as drug delivery tools for control of lipid bilayer structur...
AbstractPoly-L-lysine-induced morphological changes in liquid phase supported bilayers consisting of...
AbstractPositively charged polybasic domains are essential for recruiting multiple signaling protein...
AbstractBoth natural and synthetic polycations can induce demixing of negatively charged components ...
AbstractFunctioning of membrane proteins, in particular ionic channels, can be modulated by alterati...
AbstractInteraction of small unilamellar vesicles (SUVs), composed of negative diphosphatidylglycero...
AbstractSmall (40–60 nm in diameter) and large (300–350 nm) negative vesicles were complexed with a ...
AbstractFunctioning of membrane proteins, in particular ionic channels, can be modulated by alterati...
AbstractProteoliposomes were prepared by making bilayer vesicles from neutral egg yolk lecithin and ...
AbstractAggregation of the negatively charged liposomes caused by the addition of the linear polycat...
AbstractPeripheral proteins can trigger the formation of domains in mixed fluid-like lipid membranes...
AbstractNegatively-charged polysialic acid (polySia) chains are usually membrane-bound and are often...
AbstractEffect of a cationic polymer, poly(l-lysine), on the kinetic properties of ionic channels fo...
AbstractThere has been increasing interest in recent years in describing the lateral organization of...
AbstractPlantaricin A (plA) is a 26-residue bacteria-produced peptide pheromone with membrane-permea...
Membrane-active peptides have potential as drug delivery tools for control of lipid bilayer structur...
AbstractPoly-L-lysine-induced morphological changes in liquid phase supported bilayers consisting of...
AbstractPositively charged polybasic domains are essential for recruiting multiple signaling protein...