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Electron capture dissociation proceeds with a low degree of intramolecular migration of peptide amide hydrogens
Kasper Dyrberg Rand
, Christopher M Adams, Roman Zubarev, Thomas Jørgensen
134
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Dive into the research topics of 'Electron capture dissociation proceeds with a low degree of intramolecular migration of peptide amide hydrogens'. Together they form a unique fingerprint.
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Engineering & Materials Science
Amides
100%
Chemical activation
8%
Deuterium
27%
Electrons
66%
Experiments
6%
Gases
16%
Hydrogen
52%
Ion sources
14%
Ions
60%
Mass spectrometers
13%
Mass spectrometry
12%
Peptides
87%
Proteins
34%
Structural dynamics
10%
Chemical Compounds
Amide
47%
Cleavage
6%
Collisionally Activated Dissociation (CAD)
20%
Deuterium(.)
17%
Deuteron
12%
Electron Capture
10%
Electron-Capture Dissociation
95%
Fragmentation
7%
Gas
4%
Hydrogen
33%
Ion
22%
Ion Trap
20%
Mass Spectrometry
6%
Peptide
38%
Protein
15%
Quadrupole
18%
Vibrational Excitation
38%
Medicine & Life Sciences
Amides
78%
Deuterium
34%
Electrons
52%
Gases
21%
Hydrogen
76%
Ions
55%
Mass Spectrometry
7%
Peptides
42%
Proteins
12%