Keyphrases
Mass Spectrometry
100%
Phosphorylation Sites
100%
Channel Subunits
100%
Cardiac NaV1.5 Channels
100%
Nav1.5
100%
Nav Channels
71%
Phosphorylation
28%
Mass Spectrometry Analysis
28%
In Situ
28%
Pathophysiology
14%
Phosphoproteomic Analysis
14%
Adult Mice
14%
Pore-forming Subunit
14%
Na +
14%
Action Potential Propagation
14%
Linker
14%
N-terminus
14%
Regulatory Proteins
14%
Label-free
14%
Cardiac Ventricle
14%
Proteomic Approach
14%
Immunoprecipitates
14%
Voltage Gating
14%
Mammalian Heart
14%
Refractoriness
14%
Channel Complex
14%
Channel Regulation
14%
Prediction Algorithms
14%
Action Potential Waveform
14%
Pharmacology, Toxicology and Pharmaceutical Science
Pathophysiology
100%
Sodium Ion
100%
Regulator Protein
100%
Sodium Channel Nav1.5
100%
Neuroscience
Mass Spectrometry
100%
Sodium Channel Nav1.5
100%
Nav1.5
100%
Action Potential
14%
Proteomics
14%
Amino Terminal Sequence
14%
Immunoprecipitation
14%
Regulator Protein
14%
Biochemistry, Genetics and Molecular Biology
Mass Spectrometry
100%
Nav1.5
100%
Phosphoproteomics
12%
Electric Potential
12%
N-Terminus
12%
Mass Spectrometry
12%
Immunoprecipitation
12%
Action Potential
12%
Proteomics
12%