A physical model of selective `ion binding' in the L-type calcium channel is constructed and consequences of the model are compared to experimental data. This reduced model treats only ions and the carboxylate oxygens of the EEEE locus explicitly and restricts interactions to hard-core repulsion and ion-ion and ion-dielectric electrostatic forces. The structural atoms provide a exible environment for passing cations thus resulting in a self-organized inducedfit model of the selectivity flter. Experimental conditions involving binary mixtures of alkali and/or alkaline earth metal ions are computed using equilibrium Monte-Carlo simulations in the grand canonical ensemble. The model pore rejects alkali metal ions in the presence of biological...
Ion channel selectivity is essential for their function, yet the molecular basis of a channel's abil...
Ion channel selectivity is essential for their function, yet the molecular basis of a channel’s abil...
AbstractAnother research group has proposed an interesting model for calcium channel selectivity. Ho...
AbstractL-type calcium channels are Ca2+ binding proteins of great biological importance. They gener...
AbstractThe mechanisms underlying ion transport and selectivity in calcium channels are examined usi...
AbstractL-type calcium channels are Ca2+ binding proteins of great biological importance. They gener...
AbstractThe mechanisms underlying ion transport and selectivity in calcium channels are examined usi...
To understand the mechanisms of Na/Li permeation at submicromolar Ca2 concentrations, Na/Li block...
The mechanisms underlying ion transport and selectivity in calcium channels are examined using elect...
Ion channel selectivity is essential for their function, yet the molecular basis of a channel's abil...
AbstractWe examine how a variety of cationic channels discriminate between ions of differing charge....
We examine how a variety of cationic channels discriminate between ions of differing charge. We cons...
We report self-consistent Brownian dynamics simulations of a simple electrostatic model of the selec...
AbstractL-type Ca channels contain a cluster of four charged glutamate residues (EEEE locus), which ...
AbstractWe examine how a variety of cationic channels discriminate between ions of differing charge....
Ion channel selectivity is essential for their function, yet the molecular basis of a channel's abil...
Ion channel selectivity is essential for their function, yet the molecular basis of a channel’s abil...
AbstractAnother research group has proposed an interesting model for calcium channel selectivity. Ho...
AbstractL-type calcium channels are Ca2+ binding proteins of great biological importance. They gener...
AbstractThe mechanisms underlying ion transport and selectivity in calcium channels are examined usi...
AbstractL-type calcium channels are Ca2+ binding proteins of great biological importance. They gener...
AbstractThe mechanisms underlying ion transport and selectivity in calcium channels are examined usi...
To understand the mechanisms of Na/Li permeation at submicromolar Ca2 concentrations, Na/Li block...
The mechanisms underlying ion transport and selectivity in calcium channels are examined using elect...
Ion channel selectivity is essential for their function, yet the molecular basis of a channel's abil...
AbstractWe examine how a variety of cationic channels discriminate between ions of differing charge....
We examine how a variety of cationic channels discriminate between ions of differing charge. We cons...
We report self-consistent Brownian dynamics simulations of a simple electrostatic model of the selec...
AbstractL-type Ca channels contain a cluster of four charged glutamate residues (EEEE locus), which ...
AbstractWe examine how a variety of cationic channels discriminate between ions of differing charge....
Ion channel selectivity is essential for their function, yet the molecular basis of a channel's abil...
Ion channel selectivity is essential for their function, yet the molecular basis of a channel’s abil...
AbstractAnother research group has proposed an interesting model for calcium channel selectivity. Ho...