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Keyphrases
S-nitrosylation
100%
Inducible Nitric Oxide Synthase
100%
Contractility
100%
Reversible Redox Reaction
100%
RyR2
50%
SERCA2a
30%
Isoproterenol
30%
L-type Ca2+ Channel
30%
Adrenergic Stimulation
30%
Ca2+
20%
Total Protein
20%
Inotropism
20%
Protein S-nitrosylation
20%
Signaling Pathway
10%
Oligomerization
10%
Attenuation
10%
Methyl
10%
Isolated Rat Heart
10%
Phospholamban
10%
Transient Amplitude
10%
Cardiac Proteins
10%
Arginine
10%
Guanylate Cyclase
10%
Superoxide Scavenger
10%
Ryanodine Receptor
10%
Nitric Oxide Synthase Isoforms
10%
Sarcomere Shortening
10%
Nitric Oxide Synthase Type III
10%
Ornithine
10%
Tempol
10%
Inotropic Effect
10%
Calcium Cycling
10%
Cardiac Performance
10%
Mouse Cardiomyocytes
10%
Basal Nitric Oxide
10%
INIS
adrenergics
100%
nitric oxide
100%
proteins
58%
inhibition
41%
stimulation
25%
modifications
8%
performance
8%
relaxation
8%
amplitudes
8%
removal
8%
accounting
8%
machinery
8%
receptors
8%
mice
8%
attenuation
8%
calcium
8%
rats
8%
phosphorylation
8%
arginine
8%
cyclases
8%
ornithine
8%
Neuroscience
Neuronal Nitric Oxide Synthase
100%
Calcium Channel
30%
Adrenergic Stimulation
30%
Isoprenaline
30%
Protein
20%
Protein S
20%
Cell Signaling
10%
Arginine
10%
Phospholamban
10%
Nitric Oxide Synthase
10%
Endothelial Nitric Oxide Synthase
10%
N5 (1 Iminoethyl)ornithine
10%
Guanylate Cyclase
10%
Sarcomere
10%
Ryanodine Receptor 2
10%
Tempol
10%
Pharmacology, Toxicology and Pharmaceutical Science
Neuronal Nitric Oxide Synthase
100%
Calcium Channel
30%
Isoprenaline
30%
Protein
20%
Calcium Ion
20%
Protein S
20%
Superoxide
10%
Tempol
10%
Endothelial Nitric Oxide Synthase
10%
Phospholamban
10%
N5 (1 Iminoethyl)ornithine
10%
Arginine
10%
Nitric Oxide Synthase
10%
Guanylate Cyclase
10%
Ryanodine Receptor 2
10%
Biochemistry, Genetics and Molecular Biology
Nitric Oxide Synthase
100%
Isoprenaline
25%
Ornithine
8%
Propane
8%