Ion channels mediate electrical excitability in neurons and muscle. Three-dimensional structures for model peptide channels and for a potassium (K+) channel have been combined with computer simulations to permit rigorous exploration of structure-function relations of channels. Water molecules and ions within transbilayer pores tend to diffuse more slowly than in bulk solutions. In the narrow selectivity filter of the bacterial K+ channel (i.e. the region of the channel that discriminates between different species of ions) a column of water molecules and K+ ions moves in a concerted fashion. By combining atomistic simulations (in which all atoms of the channel molecule, water and ions are treated explicitly) with continuum methods (in which ...
Molecular modeling and simulations enable extrapolation for the structure of bacterial potassium cha...
Mathematical modeling and numerical simulations are powerful tools for the analysis of the structure...
Abstract: Despite the complexity of ion-channels, MD simulations based on realistic all-atom models ...
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...
Potassium channels enable K(+) ions to move passively across biological membranes. Multiple nanoseco...
ABSTRACT Potassium channels enable K1 ions to move passively across biological membranes. Multiple n...
Biological ion channels are protein pores of sub-nanometer radius that enable rapid movement of sele...
Ion channels are integral membrane proteins that enable selected ions to flow passively across membr...
Ion channels are integral membrane proteins that enable selected ions to flow passively across membr...
Ion channels are formed by specific proteins embedded in the cell membrane and provide pathways for ...
Mathematical modeling and numerical simulations are powerful tools for the analysis of the structure...
Mathematical modeling and numerical simulations are powerful tools for the analysis of the structure...
AbstractInteractions of Na+, K+, Rb+, and Cs+ ions within the selectivity filter of a potassium chan...
Biological ion channels are responsible for, and regulate the communication system in the body. In t...
Molecular modeling and simulations enable extrapolation for the structure of bacterial potassium cha...
Mathematical modeling and numerical simulations are powerful tools for the analysis of the structure...
Abstract: Despite the complexity of ion-channels, MD simulations based on realistic all-atom models ...
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...
Potassium channels enable K(+) ions to move passively across biological membranes. Multiple nanoseco...
ABSTRACT Potassium channels enable K1 ions to move passively across biological membranes. Multiple n...
Biological ion channels are protein pores of sub-nanometer radius that enable rapid movement of sele...
Ion channels are integral membrane proteins that enable selected ions to flow passively across membr...
Ion channels are integral membrane proteins that enable selected ions to flow passively across membr...
Ion channels are formed by specific proteins embedded in the cell membrane and provide pathways for ...
Mathematical modeling and numerical simulations are powerful tools for the analysis of the structure...
Mathematical modeling and numerical simulations are powerful tools for the analysis of the structure...
AbstractInteractions of Na+, K+, Rb+, and Cs+ ions within the selectivity filter of a potassium chan...
Biological ion channels are responsible for, and regulate the communication system in the body. In t...
Molecular modeling and simulations enable extrapolation for the structure of bacterial potassium cha...
Mathematical modeling and numerical simulations are powerful tools for the analysis of the structure...
Abstract: Despite the complexity of ion-channels, MD simulations based on realistic all-atom models ...