Water inside biological ion channels regulates the key properties of these proteins, such as selectivity, ion conductance, and gating. In this article, we measure the picosecond spectral diffusion of amide I vibrations of an isotope-labeled KcsA potassium channel using two-dimensional infrared (2D IR) spectroscopy. By combining waiting time (100–2000 fs) 2D IR measurements of the KcsA channel including 13C18O isotope-labeled Val76 and Gly77 residues with molecular dynamics simulations, we elucidated the site-specific dynamics of water and K+ ions inside the selectivity filter of KcsA. We observe inhomogeneous 2D line shapes with extremely slow spectral diffusion. Our simulations quantitatively reproduce the experiments and show that water i...
Biological ion channels are protein pores of sub-nanometer radius that enable rapid movement of sele...
The bacterial K+ channel KcsA can be used to help elucidate questions about channel inactivation and...
ABSTRACT: Although extensively studied, it has proved difficult to describe in detail how potassium ...
The potassium ion (K+) configurations of the selectivity filter of the KcsA ion channel protein are...
AbstractThe stability of the KcsA channel accommodating more than one ion in the pore has been studi...
AbstractInteractions of Na+, K+, Rb+, and Cs+ ions within the selectivity filter of a potassium chan...
Potassium channels enable K(+) ions to move passively across biological membranes. Multiple nanoseco...
AbstractThe structural, dynamical, and thermodynamic properties of a model potassium channel are stu...
ABSTRACT Potassium channels enable K1 ions to move passively across biological membranes. Multiple n...
AbstractMolecular dynamics simulations of a bacterial potassium channel (KcsA) embedded in a phospho...
The effect of ion binding in the selectivity filter of the potassium channel KcsA is investigated by...
The structural, dynamical, and thermodynamic properties of a model potassium channel are studied usi...
AbstractPotassium channels enable K+ ions to move passively across biological membranes. Multiple na...
AbstractMolecular dynamics simulations and electrostatic modeling are used to investigate structural...
Recovery in K+ channels, that is, the transition from the inactivated nonconductive selectivity filt...
Biological ion channels are protein pores of sub-nanometer radius that enable rapid movement of sele...
The bacterial K+ channel KcsA can be used to help elucidate questions about channel inactivation and...
ABSTRACT: Although extensively studied, it has proved difficult to describe in detail how potassium ...
The potassium ion (K+) configurations of the selectivity filter of the KcsA ion channel protein are...
AbstractThe stability of the KcsA channel accommodating more than one ion in the pore has been studi...
AbstractInteractions of Na+, K+, Rb+, and Cs+ ions within the selectivity filter of a potassium chan...
Potassium channels enable K(+) ions to move passively across biological membranes. Multiple nanoseco...
AbstractThe structural, dynamical, and thermodynamic properties of a model potassium channel are stu...
ABSTRACT Potassium channels enable K1 ions to move passively across biological membranes. Multiple n...
AbstractMolecular dynamics simulations of a bacterial potassium channel (KcsA) embedded in a phospho...
The effect of ion binding in the selectivity filter of the potassium channel KcsA is investigated by...
The structural, dynamical, and thermodynamic properties of a model potassium channel are studied usi...
AbstractPotassium channels enable K+ ions to move passively across biological membranes. Multiple na...
AbstractMolecular dynamics simulations and electrostatic modeling are used to investigate structural...
Recovery in K+ channels, that is, the transition from the inactivated nonconductive selectivity filt...
Biological ion channels are protein pores of sub-nanometer radius that enable rapid movement of sele...
The bacterial K+ channel KcsA can be used to help elucidate questions about channel inactivation and...
ABSTRACT: Although extensively studied, it has proved difficult to describe in detail how potassium ...