Ion channel selectivity is essential for their function, yet the molecular basis of a channel’s ability to select between ions is still rather controversial. In this work, using a combination of molecular dynamics simulations and electrophysiological current measurements we analyze the ability of the NaChBac channel to discriminate between calcium and sodium. Our simulations show that a single calcium ion can access the Selectivity Filter (SF) interacting so strongly with the glutamate ring so as to remain blocked inside. This is consistent with the tiny calcium currents recorded in our patch-clamp experiments. Two reasons explain this scenario. The first is the higher free energy of ion/SF binding of Ca 2+ with respect to Na + . The...
We use Brownian dynamics (BD) simulations to study the ionic conduction and valence selectivity of a...
Structure-function studies have shown that it is possible to convert a sodium channel to a calcium-s...
Abstract Background. The selectivity of biological cation channels is defined by a short, narrow sel...
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...
A key driving force for ion channel selectivity is represented by the negative charge of the Selecti...
A key driving force for ion channel selectivity is represented by the negative charge of the Selecti...
NaChBac was the first discovered bacterial sodium voltage-dependent channel, yet computational studi...
AbstractThe mechanisms underlying ion transport and selectivity in calcium channels are examined usi...
NaChBac was the first discovered bacterial sodium voltage-dependent channel, yet computational studi...
AbstractWe propose a model of calcium channels that can explain most of their observed properties, i...
AbstractThe mechanisms underlying ion transport and selectivity in calcium channels are examined usi...
AbstractA reduced model of a sodium channel is analyzed using Dynamic Monte Carlo simulations. These...
The crystal structure of NavAb, a bacterial voltage gated Na<sup>+</sup> channel, exhibits a selecti...
Voltage-gated Na+ channels play an essential role in electrical signaling in the nervous system and ...
We use Brownian dynamics (BD) simulations to study the ionic conduction and valence selectivity of a...
Structure-function studies have shown that it is possible to convert a sodium channel to a calcium-s...
Abstract Background. The selectivity of biological cation channels is defined by a short, narrow sel...
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...
A key driving force for ion channel selectivity is represented by the negative charge of the Selecti...
A key driving force for ion channel selectivity is represented by the negative charge of the Selecti...
NaChBac was the first discovered bacterial sodium voltage-dependent channel, yet computational studi...
AbstractThe mechanisms underlying ion transport and selectivity in calcium channels are examined usi...
NaChBac was the first discovered bacterial sodium voltage-dependent channel, yet computational studi...
AbstractWe propose a model of calcium channels that can explain most of their observed properties, i...
AbstractThe mechanisms underlying ion transport and selectivity in calcium channels are examined usi...
AbstractA reduced model of a sodium channel is analyzed using Dynamic Monte Carlo simulations. These...
The crystal structure of NavAb, a bacterial voltage gated Na<sup>+</sup> channel, exhibits a selecti...
Voltage-gated Na+ channels play an essential role in electrical signaling in the nervous system and ...
We use Brownian dynamics (BD) simulations to study the ionic conduction and valence selectivity of a...
Structure-function studies have shown that it is possible to convert a sodium channel to a calcium-s...
Abstract Background. The selectivity of biological cation channels is defined by a short, narrow sel...