Related Experiment Video
Updated: Aug 14, 2026

LERLIC-MS/MS for In-depth Characterization and Quantification of Glutamine and Asparagine Deamidation in Shotgun Proteomics
Published on: April 9, 2017
Differentiation of aspartic and isoaspartic acids using electron transfer dissociation
Peter B O'Connor1, Jason J Cournoyer2, Sharon J Pitteri3
1Mass Spectrometry Resource, Department of Biochemistry, Boston University School of Medicine, 715 Albany Street, 2118, Boston, MA, USA. poconnor@bu.edu.
Abstract:
Electron-transfer dissociation allows differentiation of isoaspartic acid and aspartic acid residues using the same c + 57 and z - 57 peaks that were previously observed with electron capture dissociation. These peaks clearly define both the presence and the position of isoaspartic acid residues and they are relatively abundant. The lower resolution of the ion trap instrument makes detection of the aspartic acid residue's diagnostic peak difficult because of interference with side-chain fragment ions from arginine residues, but the aspartic acid residues are still clearly observed in the backbone cleavages and can be inferred from the absence of the isoaspartic acid diagnostic ions.
More Related Videos
12:49Quantification of Site-specific Protein Lysine Acetylation and Succinylation Stoichiometry Using Data-independent Acquisition Mass Spectrometry
Published on: April 4, 2018
09:18Time-resolved ElectroSpray Ionization Hydrogen-deuterium Exchange Mass Spectrometry for Studying Protein Structure and Dynamics
Published on: April 17, 2017
Related Concept Videos
Polyprotic Acids
Mass Spectrometry: Carboxylic Acid, Ester, and Amide Fragmentation
For example, the fragmentation of...
¹³C NMR: Distortionless Enhancement by Polarization Transfer (DEPT)
Mass Spectrometry of Amines
Titration of a Polyprotic Acid
Titration of Polyprotic Acids with a Strong Base