AbstractA model of the selectivity filter of a voltage-gated K+ (Kv) channel formed by an eight-stranded β-barrel is compared with physiological properties of the channel. Continuum electrostatic calculations suggest that only two of the eight Asp sidechains at the extracellular mouth of the pore will ionise. A ring of four Tyr sidechains forms the narrowest region of the pore. Molecular dynamic simulations of the potential energy of a K+ ion as translated along the model pore indicate that the two ionised Asp sidechains and the hydroxyl groups of the Tyr sidechains stabilise the partially desolvated ion as it passes through the narrowest region
The structural, dynamical, and thermodynamic properties of a model potassium channel are studied usi...
KcsA is a bacterial K+ channel that is gated by pH. Continuum dielectric calculations on the crystal...
AbstractThe structural, dynamical, and thermodynamic properties of a model potassium channel are stu...
AbstractA model of the selectivity filter of a voltage-gated K+ (Kv) channel formed by an eight-stra...
A homology model of the pore domain of the Shaker K+ channel has been constructed using a bacterial ...
Recent mutagenesis experiments have confirmed our hypothesis that a segment between S5 and S6 forms ...
Potassium channels in the two-pore domain family (K2P) have various structural attributes that diffe...
Biological ion channels are protein pores of sub-nanometer radius that enable rapid movement of sele...
AbstractPotassium channels enable K+ ions to move passively across biological membranes. Multiple na...
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...
Potassium channels in the two-pore domain family (K2P) have various structural attributes that diffe...
AbstractKcsA is a bacterial K+ channel that is gated by pH. Continuum dielectric calculations on the...
AbstractA homology model has been generated for the pore-forming domain of Kir6.2, a component of an...
ABSTRACT A homology model has been generated for the pore-forming domain of Kir6.2, a component of a...
The structural, dynamical, and thermodynamic properties of a model potassium channel are studied usi...
KcsA is a bacterial K+ channel that is gated by pH. Continuum dielectric calculations on the crystal...
AbstractThe structural, dynamical, and thermodynamic properties of a model potassium channel are stu...
AbstractA model of the selectivity filter of a voltage-gated K+ (Kv) channel formed by an eight-stra...
A homology model of the pore domain of the Shaker K+ channel has been constructed using a bacterial ...
Recent mutagenesis experiments have confirmed our hypothesis that a segment between S5 and S6 forms ...
Potassium channels in the two-pore domain family (K2P) have various structural attributes that diffe...
Biological ion channels are protein pores of sub-nanometer radius that enable rapid movement of sele...
AbstractPotassium channels enable K+ ions to move passively across biological membranes. Multiple na...
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...
Potassium channels in the two-pore domain family (K2P) have various structural attributes that diffe...
AbstractKcsA is a bacterial K+ channel that is gated by pH. Continuum dielectric calculations on the...
AbstractA homology model has been generated for the pore-forming domain of Kir6.2, a component of an...
ABSTRACT A homology model has been generated for the pore-forming domain of Kir6.2, a component of a...
The structural, dynamical, and thermodynamic properties of a model potassium channel are studied usi...
KcsA is a bacterial K+ channel that is gated by pH. Continuum dielectric calculations on the crystal...
AbstractThe structural, dynamical, and thermodynamic properties of a model potassium channel are stu...