AbstractThe determination of the structure of several members of the K+ channel and aquaporin family represents a unique opportunity to explain the mechanism of these biomolecular systems. With their ability to go beyond static structures, molecular dynamics simulations offer a unique route for relating functional properties to membrane channel structure. The recent progress in this area is reviewed
AbstractA homology model has been generated for the pore-forming domain of Kir6.2, a component of an...
K+-channels are membrane proteins that regulate the selective conduction of potassium ions across ce...
AbstractInteractions of Na+, K+, Rb+, and Cs+ ions within the selectivity filter of a potassium chan...
AbstractThe determination of the structure of several members of the K+ channel and aquaporin family...
Ion channels are membrane proteins that regulate the flow of ions across the cell membrane. These ch...
The present review reports on recent progress in modeling and simulation of biological ion channels ...
AbstractPotassium channels have been studied intensively in terms of the relationship between molecu...
AbstractCrystal structures have been solved for the transbilayer pore domain of a bacterial K+ chann...
AbstractGenerations of scientists have been captivated by ion channels and how they control the work...
Abstract: Despite the complexity of ion-channels, MD simulations based on realistic all-atom models ...
Membrane proteins fascinate at many levels, from their central functional roles in transport, energy...
AbstractThe determination of the crystal structure of a K+-selective channel protein from Streptomyc...
AbstractThe structural, dynamical, and thermodynamic properties of a model potassium channel are stu...
AbstractMolecular dynamics (MD) simulations of an atomic model of the KcsA K+ channel embedded in an...
AbstractThe aquaporin-1 water channel was modeled in a palmitoyl-oleoyl-phosphatidyl-choline lipid b...
AbstractA homology model has been generated for the pore-forming domain of Kir6.2, a component of an...
K+-channels are membrane proteins that regulate the selective conduction of potassium ions across ce...
AbstractInteractions of Na+, K+, Rb+, and Cs+ ions within the selectivity filter of a potassium chan...
AbstractThe determination of the structure of several members of the K+ channel and aquaporin family...
Ion channels are membrane proteins that regulate the flow of ions across the cell membrane. These ch...
The present review reports on recent progress in modeling and simulation of biological ion channels ...
AbstractPotassium channels have been studied intensively in terms of the relationship between molecu...
AbstractCrystal structures have been solved for the transbilayer pore domain of a bacterial K+ chann...
AbstractGenerations of scientists have been captivated by ion channels and how they control the work...
Abstract: Despite the complexity of ion-channels, MD simulations based on realistic all-atom models ...
Membrane proteins fascinate at many levels, from their central functional roles in transport, energy...
AbstractThe determination of the crystal structure of a K+-selective channel protein from Streptomyc...
AbstractThe structural, dynamical, and thermodynamic properties of a model potassium channel are stu...
AbstractMolecular dynamics (MD) simulations of an atomic model of the KcsA K+ channel embedded in an...
AbstractThe aquaporin-1 water channel was modeled in a palmitoyl-oleoyl-phosphatidyl-choline lipid b...
AbstractA homology model has been generated for the pore-forming domain of Kir6.2, a component of an...
K+-channels are membrane proteins that regulate the selective conduction of potassium ions across ce...
AbstractInteractions of Na+, K+, Rb+, and Cs+ ions within the selectivity filter of a potassium chan...