AbstractAlthough a few x-ray structures of the KcsA K+ channel have been crystallized several issues concerning the mechanisms of the ionic permeation and the protonation state of the selectivity filter ionizable side chains are still open. Using a first-principles quantum mechanical/molecular mechanical simulation approach, we have investigated the protonation state of Glu-71 and Asp-80, two important residues located in the vicinity of the selectivity filter. Results from the dynamics show that a proton is shared between the two residues, with a slight preference for Glu-71. The proton is found to exchange on the picosecond timescale, an interesting phenomenon that cannot be observed in classical molecular dynamics. Simulations of differe...
The chemical-physical basis for K+ permeation and selectivity in K+ channels has been the focus of a...
AbstractKcsA is a bacterial K+ channel that is gated by pH. Continuum dielectric calculations on the...
The chemical-physical basis for K+ permeation and selectivity in K+ channels has been the focus of a...
ABSTRACT Although a few x-ray structures of the KcsA K1 channel have been crystallized several issue...
AbstractThe side chain of Glu-71 of the KcsA K+ channel, an important residue in the vicinity of the...
KcsA is a bacterial K+ channel that is gated by pH. Continuum dielectric calculations on the crystal...
Quantum mechanics/molecular mechanics (QM/MM) Car-Parrinello simulations were performed to estimate ...
AbstractThe structural, dynamical, and thermodynamic properties of a model potassium channel are stu...
The structural, dynamical, and thermodynamic properties of a model potassium channel are studied usi...
AbstractInteractions of Na+, K+, Rb+, and Cs+ ions within the selectivity filter of a potassium chan...
We present a theoretical study on structural and electronic aspects of K + permeation through the bi...
ABSTRACT Potassium channels enable K1 ions to move passively across biological membranes. Multiple n...
Potassium channels enable K(+) ions to move passively across biological membranes. Multiple nanoseco...
AbstractPotassium channels enable K+ ions to move passively across biological membranes. Multiple na...
AbstractMolecular dynamics (MD) simulations of an atomic model of the KcsA K+ channel embedded in an...
The chemical-physical basis for K+ permeation and selectivity in K+ channels has been the focus of a...
AbstractKcsA is a bacterial K+ channel that is gated by pH. Continuum dielectric calculations on the...
The chemical-physical basis for K+ permeation and selectivity in K+ channels has been the focus of a...
ABSTRACT Although a few x-ray structures of the KcsA K1 channel have been crystallized several issue...
AbstractThe side chain of Glu-71 of the KcsA K+ channel, an important residue in the vicinity of the...
KcsA is a bacterial K+ channel that is gated by pH. Continuum dielectric calculations on the crystal...
Quantum mechanics/molecular mechanics (QM/MM) Car-Parrinello simulations were performed to estimate ...
AbstractThe structural, dynamical, and thermodynamic properties of a model potassium channel are stu...
The structural, dynamical, and thermodynamic properties of a model potassium channel are studied usi...
AbstractInteractions of Na+, K+, Rb+, and Cs+ ions within the selectivity filter of a potassium chan...
We present a theoretical study on structural and electronic aspects of K + permeation through the bi...
ABSTRACT Potassium channels enable K1 ions to move passively across biological membranes. Multiple n...
Potassium channels enable K(+) ions to move passively across biological membranes. Multiple nanoseco...
AbstractPotassium channels enable K+ ions to move passively across biological membranes. Multiple na...
AbstractMolecular dynamics (MD) simulations of an atomic model of the KcsA K+ channel embedded in an...
The chemical-physical basis for K+ permeation and selectivity in K+ channels has been the focus of a...
AbstractKcsA is a bacterial K+ channel that is gated by pH. Continuum dielectric calculations on the...
The chemical-physical basis for K+ permeation and selectivity in K+ channels has been the focus of a...