A technique of measuring of the light-induced transients of the gramicidin-mediated electric current across a membrane in the presence of a photosensitizer has been applied for the study of the effect of agents modifying the dipole potential of a bilayer lipid membrane (phloretin, 6-ketocholestanol, and RH421) on the processes of the gramicidin channel dissociation and formation. It is shown that phloretin, known to lower the dipole potential, decelerates the flash-induced decrease in the current, whereas 6-ketocholestanol and RH421, known to raise the dipole potential, accelerate the current decrease. It is revealed that the addition of phloretin leads to a decrease in the dissociation rate constant, whereas addition of either 6-ketocholes...
AbstractPotential step amperometry (chronoamperometry) of the Tl(I)/Tl(Hg) electrochemical reduction...
AbstractThe effects of different anionic polymers on the kinetic properties of ionic channels formed...
Compared with alkali metal cations, formamidinium ions stabilize the gramicidin A channel molecule i...
A technique of measuring of the light-induced transients of the gramicidin-mediated electric current...
AbstractPhotosensitized inactivation of ionic channels formed by gramicidin in the planar bilayer li...
AbstractThe effect of channel-forming peptide gramicidin A on the dipole potential of phospholipid m...
AbstractThe effect of membrane dipole potential on gramicidin channel activity in bilayer lipid memb...
AbstractThe method of sensitized photoinactivation based on the photosensitized damage of gramicidin...
AbstractPhotosensitized inactivation of ionic channels formed by gramicidin in the planar bilayer li...
AbstractThe effect of membrane dipole potential on gramicidin channel activity in bilayer lipid memb...
AbstractThe method of sensitized photoinactivation based on the photosensitized damage of gramicidin...
AbstractEffect of a cationic polymer, poly(l-lysine), on the kinetic properties of ionic channels fo...
AbstractThe formation kinetics of gramicidin A channels in lipid bilayer membranes has been characte...
AbstractFunctioning of membrane proteins, in particular ionic channels, can be modulated by alterati...
AbstractThe effect of phthalocyanines, the potent photodynamic sensitizers, on the electric properti...
AbstractPotential step amperometry (chronoamperometry) of the Tl(I)/Tl(Hg) electrochemical reduction...
AbstractThe effects of different anionic polymers on the kinetic properties of ionic channels formed...
Compared with alkali metal cations, formamidinium ions stabilize the gramicidin A channel molecule i...
A technique of measuring of the light-induced transients of the gramicidin-mediated electric current...
AbstractPhotosensitized inactivation of ionic channels formed by gramicidin in the planar bilayer li...
AbstractThe effect of channel-forming peptide gramicidin A on the dipole potential of phospholipid m...
AbstractThe effect of membrane dipole potential on gramicidin channel activity in bilayer lipid memb...
AbstractThe method of sensitized photoinactivation based on the photosensitized damage of gramicidin...
AbstractPhotosensitized inactivation of ionic channels formed by gramicidin in the planar bilayer li...
AbstractThe effect of membrane dipole potential on gramicidin channel activity in bilayer lipid memb...
AbstractThe method of sensitized photoinactivation based on the photosensitized damage of gramicidin...
AbstractEffect of a cationic polymer, poly(l-lysine), on the kinetic properties of ionic channels fo...
AbstractThe formation kinetics of gramicidin A channels in lipid bilayer membranes has been characte...
AbstractFunctioning of membrane proteins, in particular ionic channels, can be modulated by alterati...
AbstractThe effect of phthalocyanines, the potent photodynamic sensitizers, on the electric properti...
AbstractPotential step amperometry (chronoamperometry) of the Tl(I)/Tl(Hg) electrochemical reduction...
AbstractThe effects of different anionic polymers on the kinetic properties of ionic channels formed...
Compared with alkali metal cations, formamidinium ions stabilize the gramicidin A channel molecule i...