AbstractBrownian dynamics simulations have been carried out to study ionic currents flowing across a model membrane channel under various conditions. The model channel we use has a cylindrical transmembrane segment that is joined to a catenary vestibule at each side. Two cylindrical reservoirs connected to the channel contain a fixed number of sodium and chloride ions. Under a driving force of 100mV, the channel is virtually impermeable to sodium ions, owing to the repulsive dielectric force presented to ions by the vestibular wall. When two rings of dipoles, with their negative poles facing the pore lumen, are placed just above and below the constricted channel segment, sodium ions cross the channel. The conductance increases with increasi...
Ion channels are formed by specific proteins embedded in the cell membrane and provide pathways for ...
AbstractUsing the experimentally determined KcsA structure as a template, we propose a plausible exp...
The behavior of a multiply-occupied cation-selective channel has been computed by Brownian dynamics....
AbstractBrownian dynamics simulations have been carried out to study ionic currents flowing across a...
AbstractBrownian dynamics simulations have been carried out to study the transport of ions in a vest...
The physical mechanisms underlying the transport of ions across a model potassium channel are descri...
AbstractThe physical mechanisms underlying the transport of ions across a model potassium channel ar...
Ionic motion through an open ion channel is analyzed within the framework of self‐consistent Brownia...
Ionic motion through an open ion channel is analyzed within the framework of self‐consistent Brownia...
Biological ion channels are water-filled angstrom-unit (1 angstrom unit=10-10 m)sized pores formed b...
We review the basic physics involved in transport of ions across membrane channels in cells. Electro...
Ionic motion through an open ion channel is analyzed within the framework of self-consistent Brownia...
Using a combination of techniques, including molecular dynamics, time-correlation analysis, stochast...
AbstractIdentification of the molecular interaction governing ion conduction through biological pore...
Ion channels are pore-forming proteins that regulate the flow of ions across biological cell membran...
Ion channels are formed by specific proteins embedded in the cell membrane and provide pathways for ...
AbstractUsing the experimentally determined KcsA structure as a template, we propose a plausible exp...
The behavior of a multiply-occupied cation-selective channel has been computed by Brownian dynamics....
AbstractBrownian dynamics simulations have been carried out to study ionic currents flowing across a...
AbstractBrownian dynamics simulations have been carried out to study the transport of ions in a vest...
The physical mechanisms underlying the transport of ions across a model potassium channel are descri...
AbstractThe physical mechanisms underlying the transport of ions across a model potassium channel ar...
Ionic motion through an open ion channel is analyzed within the framework of self‐consistent Brownia...
Ionic motion through an open ion channel is analyzed within the framework of self‐consistent Brownia...
Biological ion channels are water-filled angstrom-unit (1 angstrom unit=10-10 m)sized pores formed b...
We review the basic physics involved in transport of ions across membrane channels in cells. Electro...
Ionic motion through an open ion channel is analyzed within the framework of self-consistent Brownia...
Using a combination of techniques, including molecular dynamics, time-correlation analysis, stochast...
AbstractIdentification of the molecular interaction governing ion conduction through biological pore...
Ion channels are pore-forming proteins that regulate the flow of ions across biological cell membran...
Ion channels are formed by specific proteins embedded in the cell membrane and provide pathways for ...
AbstractUsing the experimentally determined KcsA structure as a template, we propose a plausible exp...
The behavior of a multiply-occupied cation-selective channel has been computed by Brownian dynamics....