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S-nitrosylation signaling in cell biology.
Benjamin M. Gaston
, Jeannean Carver
, Allan Doctor
, Lisa A. Palmer
Division of Critical Care Medicine
Research output
:
Contribution to journal
›
Review article
›
peer-review
180
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Scopus citations
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Keyphrases
Active Site Motif
33%
Bioactivity
33%
Catalytic Reaction
33%
Cell Biology
100%
Cell Wall Proteins
33%
Cysteine Thiols
33%
Cystic Fibrosis
33%
Electron Acceptor
33%
Enzyme System
33%
Ion Channels
33%
Lipophilic Protein
33%
Metabolism
33%
Metalloproteins
33%
Molecular Pathways
33%
New Therapies
33%
Nitric Oxide
100%
Physiological Condition
33%
Post-translational Modification
33%
Protein Folding
33%
Proteins Form
33%
Pulmonary Hypertension
33%
Redox-active
33%
Regulatory Proteins
33%
S-nitrosothiols
100%
S-nitrosylated Proteins
66%
S-nitrosylation
100%
Transfer Reactions
33%
Transnitrosylation
33%
Neuroscience
Cell Biology
100%
Cell Protein
33%
Cell Signaling
33%
Cysteine
33%
Cystic Fibrosis
33%
Cytology
100%
Cytotechnology
100%
Hypertension
33%
Ion Channel
33%
Metabolic Pathway
33%
Metalloprotein
33%
Nitric Oxide
100%
Posttranslational Modification
33%
Regulator Protein
33%
Thiol
33%
Medicine and Dentistry
Biological Activity
33%
Cell Protein
33%
Cysteine
33%
Cystic Fibrosis
33%
Cytotechnology
100%
Diseases
33%
Ion Channel
33%
Metalloprotein
33%
Nitric Oxide
100%
Protein Processing
33%
Pulmonary Hypertension
33%
Regulator Protein
33%
S-Nitrosothiol
100%
Signal Transduction
33%
Thiol
33%
Biochemistry, Genetics and Molecular Biology
Biological Activity
33%
Cysteine
33%
Cystic Fibrosis
33%
Enzyme
33%
Ion Channel
33%
Metabolic Pathway
33%
Metalloprotein
33%
Nitric Oxide
100%
Posttranslational Modification
33%
Protein Folds
33%
Regulatory Protein
33%
S-Nitrosothiol
100%
S-Nitrosylation
100%
Signal Transduction
33%
Thiol
33%
Pharmacology, Toxicology and Pharmaceutical Science
Cell Protein
33%
Cysteine
33%
Cystic Fibrosis
33%
Diseases
33%
Ion Channel
33%
Metalloprotein
33%
Nitric Oxide
100%
Pulmonary Hypertension
33%
Regulator Protein
33%
S-Nitrosothiol
100%
Thiol
33%