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Molecular mechanisms of BK channel activation
J. Cui
, H. Yang
, U. S. Lee
Department of Biomedical Engineering
Roy and Diana Vagelos Division of Biology & Biomedical Sciences (DBBS)
DBBS - Neurosciences
Research output
:
Contribution to journal
›
Review article
›
peer-review
180
Scopus citations
Overview
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Keyphrases
Molecular Mechanism
100%
BK Channel
100%
Channel Activation
100%
Ca2+
40%
Cell Membrane
20%
Potassium
20%
Physiological Role
20%
Mg2+
20%
Muscle Contraction
20%
Intracellular Ca2+
20%
Large Conductance
20%
Physiological Processes
20%
K+ Flux
20%
Transmembrane Voltage
20%
Animal Kingdom
20%
Membrane Excitability
20%
Structural Domains
20%
Cellular Metabolism
20%
Voltage Sensor
20%
Transmembrane Segment
20%
Voltage-gated K+ Channels
20%
Neural Transmission
20%
Voltage Sensor Domain
20%
Mutual Interaction
20%
Animal Play
20%
Biochemistry, Genetics and Molecular Biology
BK Channel
100%
Electric Potential
80%
C-Terminus
20%
Cell Membrane
20%
Conductance
20%
Excitability
20%
Physiological Process
20%
Synaptic Transmission
20%
Cell Metabolism
20%
Muscle Contraction
20%
Voltage-Gated Potassium Channel
20%
S1 Domain
20%
Immunology and Microbiology
Electric Potential
100%
Carboxy Terminal Sequence
25%
Cell Membrane
25%
Conductance
25%
Synaptic Transmission
25%
Physiological Process
25%
Excitability
25%
Cell Metabolism
25%
Muscle Contraction
25%
Voltage-Gated Potassium Channel
25%
Neuroscience
BK Channel
100%
C-Terminus
20%
Metabolic Pathway
20%
Excitability
20%
Sensation of Hearing
20%
Synaptic Transmission
20%
Voltage-Gated Potassium Channel
20%