INIS
comparative evaluations
25%
cooperatives
25%
data
25%
deactivation
100%
endoplasmic reticulum
25%
half-life
25%
hypothesis
25%
inactivation
50%
increasing
75%
interactions
25%
ions
25%
kinetics
100%
levels
100%
modeling
25%
potassium
100%
potentials
100%
proteins
75%
retention
25%
simulation
100%
surface potential
50%
surfaces
25%
voltage
50%
Immunology and Microbiology
Action Potential
100%
Cell Surface
8%
Conductance
8%
Electric Potential
16%
Endoplasmic reticulum
8%
Glycosylation
100%
Potassium Channels
100%
Sialylation
8%
Signal Transduction
8%
Wild Type
8%
Biochemistry, Genetics and Molecular Biology
Action Potential
100%
Conductance
8%
Electric Potential
16%
Glycosylation
100%
Ion Channel
8%
Kv1.1
8%
Potassium Channel
100%
Sialylation
8%
Signal Transduction
8%
Wild Type
8%
Neuroscience
Action Potential
100%
Cell Signaling
8%
Endoplasmic Reticulum
8%
Glycosylated Protein
8%
Glycosylation
100%
Ion Channel
8%
Potassium Channel Kv1.1
8%
Potassium Channel Kv1.2
100%
Keyphrases
Channel Type
10%
Conformational Mechanism
10%
Endoplasmic Reticulum Retention
10%
Hyperpolarized
10%
Kinetic Dependence
10%
Kv1.2
100%
Kv1.4
10%
Kv2.1
10%
Protein Half-life
10%