Biochemistry, Genetics and Molecular Biology
Adenosine Diphosphate
25%
ADP-ribosylation
100%
Amino Acid
8%
Arginine
16%
DNA Damage
8%
Electron Transfer
8%
Electron Transport
8%
Electron-Transfer Dissociation
25%
Histidine
16%
Histone
8%
Mass Spectrometry
100%
Mitochondrion
8%
Posttranslational Modification
16%
Precursor
8%
Protease
16%
Protein Catabolism
8%
Proteome
8%
Proteomics
100%
Tandem Mass Spectrometry
8%
Tyrosine
16%
Keyphrases
ADP-ribosylation
100%
Amino Acid Residues
8%
Arginine
8%
Arginine Residue
8%
Cellular Processes
8%
Crucial Function
8%
DNA Damage
8%
Electron Impact Dissociation
25%
Electron Transfer
16%
Endoplasmic Reticulum
8%
Energy-resolved Collision-induced Dissociation (ER-CID)
16%
Fragment-based Method
8%
Functional Enrichment Analysis
8%
HeLa Cells
8%
High-resolution MS
8%
Histidine
8%
Histidine Residue
8%
Histone
8%
Identification Indicators
8%
Mass Spectrometry Analysis
100%
Mitochondria
8%
MS Spectra
8%
MS-MS
8%
Peptide Mapping
8%
Phosphorylation
8%
Post-translational Modification
16%
Protease
16%
Proteolytic Digestion
8%
Proteomics
8%
Residue Type
16%
System-wide
8%
Tyrosine
8%
Tyrosine Residue
8%
Neuroscience
Adenosine Diphosphate
25%
ADP-ribosylation
100%
Amino Acid
8%
Arginine
16%
DNA Damage
8%
Electron Transport
41%
Endoplasmic Reticulum
8%
Histidine
16%
Histone
8%
Mass Spectrometry
100%
Mitochondrion
8%
Posttranslational Modification
16%
Proteinase
16%
Proteome
8%
Proteomics
100%
Ribosome
8%
Chemistry
Amino Acid
6%
Ammonium Dihydrogen Phosphate
100%
Arginine
13%
Collisional
13%
DNA
6%
Electron Transfer
6%
Electron Transport
26%
Histidine
13%
Histone
6%
Mass Spectrometry
100%
Peptide Mapping
6%
phosphorylation
6%
Post-Translational Modification
13%
proteolytic
6%
Proteomics
100%
Tandem Mass Spectrometry
6%
Tyrosine Residue
6%
Immunology and Microbiology
Adenosine Diphosphate Ribosylation
100%
Amino Acid
8%
Arginine
16%
DNA Damage
8%
Electron Transport
41%
Endoplasmic Reticulum
8%
Histidine
16%
Histone
8%
Mitochondrion
8%
Peptides
8%
Post-Translational Modification
16%
Precursor
8%
Protein Degradation
8%
Proteomics
100%
Tandem Mass Spectrometry
8%
Tyrosine
16%