K+-channels are membrane proteins that regulate the selective conduction of potassium ions across cell membranes. Although the atomic mechanisms of K+ permeation have been extensively investigated, previous work focused on characterizing the selectivity and occupancy of the binding sites, the role of water molecules in the conduction process, or the identification of the minimum energy pathways enabling permeation. Here, we exploit molecular dynamics simulations and the analytical power of Markov state models to perform a comparative study of ion conduction in three distinct channel models. Significant differences emerged in terms of permeation mechanisms and binding site occupancy by potassium ions and/or water molecules from 100 \u3bcs cu...
Potassium channels selectively conduct K+ions across cellular membranes with extraordinary efficienc...
Potassium channels selectively conduct K+ions across cellular membranes with extraordinary efficienc...
Potassium channels selectively conduct K+ions across cellular membranes with extraordinary efficienc...
K+-channels are membrane proteins that regulate the selective conduction of potassium ions across ce...
K+-channels are membrane proteins that regulate the selective conduction of potassium ions across ce...
K+-channels are membrane proteins that regulate the selective conduction of potassium ions across ce...
K+-channels are membrane proteins that regulate the selective conduction of potassium ions across ce...
K+-channels are membrane proteins that regulate the selective conduction of potassium ions across ce...
K+-channels are membrane proteins that regulate the selective conduction of potassium ions across ce...
Potassium channels selectively conduct K+ ions across cellular membranes with extraordinary efficien...
Potassium channels selectively conduct K+ions across cellular membranes with extraordinary efficienc...
Potassium channels selectively conduct K+ions across cellular membranes with extraordinary efficienc...
Potassium channels selectively conduct K+ions across cellular membranes with extraordinary efficienc...
Potassium channels selectively conduct K+ions across cellular membranes with extraordinary efficienc...
Potassium channels selectively conduct K+ions across cellular membranes with extraordinary efficienc...
Potassium channels selectively conduct K+ions across cellular membranes with extraordinary efficienc...
Potassium channels selectively conduct K+ions across cellular membranes with extraordinary efficienc...
Potassium channels selectively conduct K+ions across cellular membranes with extraordinary efficienc...
K+-channels are membrane proteins that regulate the selective conduction of potassium ions across ce...
K+-channels are membrane proteins that regulate the selective conduction of potassium ions across ce...
K+-channels are membrane proteins that regulate the selective conduction of potassium ions across ce...
K+-channels are membrane proteins that regulate the selective conduction of potassium ions across ce...
K+-channels are membrane proteins that regulate the selective conduction of potassium ions across ce...
K+-channels are membrane proteins that regulate the selective conduction of potassium ions across ce...
Potassium channels selectively conduct K+ ions across cellular membranes with extraordinary efficien...
Potassium channels selectively conduct K+ions across cellular membranes with extraordinary efficienc...
Potassium channels selectively conduct K+ions across cellular membranes with extraordinary efficienc...
Potassium channels selectively conduct K+ions across cellular membranes with extraordinary efficienc...
Potassium channels selectively conduct K+ions across cellular membranes with extraordinary efficienc...
Potassium channels selectively conduct K+ions across cellular membranes with extraordinary efficienc...
Potassium channels selectively conduct K+ions across cellular membranes with extraordinary efficienc...
Potassium channels selectively conduct K+ions across cellular membranes with extraordinary efficienc...
Potassium channels selectively conduct K+ions across cellular membranes with extraordinary efficienc...