Keyphrases
PIP2 Binding
100%
Kir6.2
100%
Binding Site
100%
Functional Analysis
100%
Phosphatidylinositol 4,5-bisphosphate (PIP2)
100%
Molecular Modelling Analysis
100%
Channel Opening
33%
Kir Channels
33%
Channel Inhibition
33%
Ligand Docking
16%
Electrical Activity
16%
Fatty Acyls
16%
Bisphosphonates
16%
Transmembrane Domain
16%
Head Group
16%
Mutagenesis
16%
Functional Data
16%
Cell Metabolism
16%
Plasma Membrane
16%
Homology Modeling
16%
Family Members
16%
KATP Channel
16%
ATP Binding
16%
Pore-forming Subunit
16%
Binding Inhibition
16%
Phosphoinositol
16%
ATP-sensitive Potassium
16%
Channel Closure
16%
N-terminus
16%
C-terminus
16%
Biochemistry, Genetics and Molecular Biology
Kir6.2
100%
Adenosine Triphosphate
100%
Molecular Model
100%
Binding Site
100%
Cell Membrane
20%
C-Terminus
20%
Transmembrane Domain
20%
Cell Metabolism
20%
Homology Modeling
20%
N-Terminus
20%
Electric Activity
20%
Inositol Phosphate
20%
Mutagenesis
20%
Neuroscience
Molecular Model
100%
Kir6.2
100%
Binding Site
100%
Adenosine Triphosphate
100%
Inwardly Rectifying Potassium Channel Subunit Kir6.2
20%
Mutagenesis
20%
Cell Membrane
20%
Inositol Phosphate
20%
Metabolic Pathway
20%
C-Terminus
20%
Amino Terminal Sequence
20%
Immunology and Microbiology
Binding Site
100%
Molecular Model
100%
Carboxy Terminal Sequence
33%
Electric Activity
33%
Cell Membrane
33%
Amino Terminal Sequence
33%
Cell Metabolism
33%
Mutagenesis
33%