Inward rectifier potassium (Kir) channels regulate cell excitability and transport K+ ions across membranes. Homotetrameric models of three mammalian Kir channels (Kir1.1, Kir3.1, and Kir6.2) have been generated, using the KirBac3.1 transmembrane and rat Kir3.1 intracellular domain structures as templates. All three models have been explored by 10 ns molecular dynamics simulations in phospholipid bilayers. Analysis of the initial structures revealed conservation of potential lipid interaction residues (Trp/Tyr and Arg/Lys side chains near the lipid headgroup-water interfaces). Examination of the intracellular domains revealed key structural differences between Kir1.1 and Kir6.2 which may explain the difference in channel inhibition by ATP. ...
AbstractThe single-channel conductance varies significantly between different members of the inward ...
Phosphatidylinositol bisphosphate (PIP<sub>2</sub>) is an activator of mammalian inwardly rectifying...
Potassium channels have been studied intensively in terms of the relationship between molecular stru...
Inward rectifier potassium (Kir) channels regulate cell excitability and transport K+ ions across me...
ABSTRACT: Inward rectifier potassium (Kir) channels regulate cell excitability and transport K+ ions...
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...
Inward rectifier (Kir) potassium channels are characterized by two transmembrane helices per subunit...
AbstractInward rectifier (Kir) potassium channels are characterized by two transmembrane helices per...
Biological ion channels are protein pores of sub-nanometer radius that enable rapid movement of sele...
AbstractThe bacterial channel KirBac1.1 provides a structural homolog of mammalian inward rectifier ...
The bacterial channel KirBac1.1 provides a structural homolog of mammalian inward rectifier potassiu...
Molecular modeling and simulations enable extrapolation for the structure of bacterial potassium cha...
Phosphatidylinositol bisphosphate (PIP(2)) is an activator of mammalian inwardly rectifying potassiu...
Phosphatidylinositol bisphosphate (PIP₂) is an activator of mammalian inwardly rectifying potassium ...
AbstractThe single-channel conductance varies significantly between different members of the inward ...
Phosphatidylinositol bisphosphate (PIP<sub>2</sub>) is an activator of mammalian inwardly rectifying...
Potassium channels have been studied intensively in terms of the relationship between molecular stru...
Inward rectifier potassium (Kir) channels regulate cell excitability and transport K+ ions across me...
ABSTRACT: Inward rectifier potassium (Kir) channels regulate cell excitability and transport K+ ions...
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...
Inward rectifier (Kir) potassium channels are characterized by two transmembrane helices per subunit...
AbstractInward rectifier (Kir) potassium channels are characterized by two transmembrane helices per...
Biological ion channels are protein pores of sub-nanometer radius that enable rapid movement of sele...
AbstractThe bacterial channel KirBac1.1 provides a structural homolog of mammalian inward rectifier ...
The bacterial channel KirBac1.1 provides a structural homolog of mammalian inward rectifier potassiu...
Molecular modeling and simulations enable extrapolation for the structure of bacterial potassium cha...
Phosphatidylinositol bisphosphate (PIP(2)) is an activator of mammalian inwardly rectifying potassiu...
Phosphatidylinositol bisphosphate (PIP₂) is an activator of mammalian inwardly rectifying potassium ...
AbstractThe single-channel conductance varies significantly between different members of the inward ...
Phosphatidylinositol bisphosphate (PIP<sub>2</sub>) is an activator of mammalian inwardly rectifying...
Potassium channels have been studied intensively in terms of the relationship between molecular stru...