AbstractIn the narrow segment of an ion conducting pathway, it is likely that a permeating ion influences the positions of the nearby atoms that carry partial or full electronic charges. Here we introduce a method of incorporating the motion of charged atoms lining the pore into Brownian dynamics simulations of ion conduction. The movements of the carbonyl groups in the selectivity filter of the KcsA channel are calculated explicitly, allowing their bond lengths, bond angles, and dihedral angels to change in response to the forces acting upon them. By systematically changing the coefficients of bond stretching and of angle bending, the carbon and oxygen atoms can be made to fluctuate from their fixed positions by varying mean distances. We ...
AbstractThe Poisson-Nernst-Planck electrodiffusion theory serves to compute charge fluxes and is her...
ABSTRACT: Potassium ion channels form pores in cell membranes, allowing potassium ions through while...
Ionic motion through an open ion channel is analyzed within the framework of self‐consistent Brownia...
ABSTRACT In the narrow segment of an ion conducting pathway, it is likely that a permeating ion infl...
AbstractConduction of ions through the NaK channel, with M0 helix removed, was studied using both Br...
AbstractThe mechanisms underlying transport of ions across the potassium channel are examined using ...
AbstractThree-dimensional Brownian dynamics simulations are used to study conductance of the KcsA po...
AbstractUsing the experimentally determined KcsA structure as a template, we propose a plausible exp...
The macroscopic Nernst-Planck (NP) theory has often been used for predicting ion channel currents in...
AbstractThe structural, dynamical, and thermodynamic properties of a model potassium channel are stu...
AbstractA hierarchical computational strategy combining molecular modeling, electrostatics calculati...
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...
The ability of biological ion channels to conduct selected ions across cell membranes is critical fo...
AbstractBrownian dynamics (BD) simulations provide a practical method for the calculation of ion cha...
AbstractThe Poisson-Nernst-Planck electrodiffusion theory serves to compute charge fluxes and is her...
ABSTRACT: Potassium ion channels form pores in cell membranes, allowing potassium ions through while...
Ionic motion through an open ion channel is analyzed within the framework of self‐consistent Brownia...
ABSTRACT In the narrow segment of an ion conducting pathway, it is likely that a permeating ion infl...
AbstractConduction of ions through the NaK channel, with M0 helix removed, was studied using both Br...
AbstractThe mechanisms underlying transport of ions across the potassium channel are examined using ...
AbstractThree-dimensional Brownian dynamics simulations are used to study conductance of the KcsA po...
AbstractUsing the experimentally determined KcsA structure as a template, we propose a plausible exp...
The macroscopic Nernst-Planck (NP) theory has often been used for predicting ion channel currents in...
AbstractThe structural, dynamical, and thermodynamic properties of a model potassium channel are stu...
AbstractA hierarchical computational strategy combining molecular modeling, electrostatics calculati...
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...
The ability of biological ion channels to conduct selected ions across cell membranes is critical fo...
AbstractBrownian dynamics (BD) simulations provide a practical method for the calculation of ion cha...
AbstractThe Poisson-Nernst-Planck electrodiffusion theory serves to compute charge fluxes and is her...
ABSTRACT: Potassium ion channels form pores in cell membranes, allowing potassium ions through while...
Ionic motion through an open ion channel is analyzed within the framework of self‐consistent Brownia...