As a prototype for binding and interaction in biological Na and K channels, the single channel conductances for Li, Na, K, Rb, Cs, H, and Tl and the membrane potentials for Tl-K mixtures are characterized for gramicidin A over wider concentration rangers than previously and analyzed using an "equilibrium domain" model that assumes a central rate-determining barrier. Peculiarities in the conductance-concentration relationship for TlF, TlNO3, and TlAc suggest that anions bind to Tl-loaded channels, and the theory is extended to allow for this. For concreteness, the selectivity of cation permeation is characterized in terms of individual binding and rate constants of this model, with the conclusions that the strongest site binds Cs greater tha...
poster abstractGramicidin A (gA) is a transmembrane, cation selective ion channel that has been used...
The valence selectivity of the gramicidin channel is examined using computer simulations based on at...
The potential of mean force for Na+ and K+ ions as a function of position in the interior of a perio...
As a prototype for binding and interaction in biological Na and K channels, the single channel condu...
In an open circuit there can be no net cation flux through membranes containing only cation-selectiv...
The structural and thermodynamic factors responsible for the singly and doubly occupied saturation s...
AbstractThe impact on the cation-transport free-energy profile of replacing the C-terminal ethanolam...
The influence of a gramicidin-like channel former on ion free energy barriers is studied using Monte...
A theoretical model of the gramicidin A channel is presented and the kinetic behavior of the model i...
AbstractIon permeation through the gramicidin channel is studied using a model that circumvents two ...
In an open circuit there can be no net cation flux through membranes containing only cation-selectiv...
The conductance properties of organic cations in single gramicidin A channels were studied using pla...
AbstractStreaming potentials have been measured for gramicidin channels with a new method employing ...
To investigate the molecular origin of decreased conductance in variant gramicidin channels, we exam...
The permeability characteristics of gramicidin A channels are generally considered to reflect accura...
poster abstractGramicidin A (gA) is a transmembrane, cation selective ion channel that has been used...
The valence selectivity of the gramicidin channel is examined using computer simulations based on at...
The potential of mean force for Na+ and K+ ions as a function of position in the interior of a perio...
As a prototype for binding and interaction in biological Na and K channels, the single channel condu...
In an open circuit there can be no net cation flux through membranes containing only cation-selectiv...
The structural and thermodynamic factors responsible for the singly and doubly occupied saturation s...
AbstractThe impact on the cation-transport free-energy profile of replacing the C-terminal ethanolam...
The influence of a gramicidin-like channel former on ion free energy barriers is studied using Monte...
A theoretical model of the gramicidin A channel is presented and the kinetic behavior of the model i...
AbstractIon permeation through the gramicidin channel is studied using a model that circumvents two ...
In an open circuit there can be no net cation flux through membranes containing only cation-selectiv...
The conductance properties of organic cations in single gramicidin A channels were studied using pla...
AbstractStreaming potentials have been measured for gramicidin channels with a new method employing ...
To investigate the molecular origin of decreased conductance in variant gramicidin channels, we exam...
The permeability characteristics of gramicidin A channels are generally considered to reflect accura...
poster abstractGramicidin A (gA) is a transmembrane, cation selective ion channel that has been used...
The valence selectivity of the gramicidin channel is examined using computer simulations based on at...
The potential of mean force for Na+ and K+ ions as a function of position in the interior of a perio...