Electron capture dissociation of substance P using a commercially available Fourier transform ion cyclotron resonance mass spectrometer
Jan Peter Axelsson, Magnus Palmblad, Kristina Håkansson, P. Håkansson
Abstract
Jan Peter Axelsson, Magnus Palmblad, Kristina Håkansson, P. Håkansson
Abstract
Electron capture dissociation of the peptide Substance P is reported for the first time, with an unmodified, commercially available Fourier transform ion cyclotron resonance (FTICR) mass spectrometer. The fragmentation pattern is compared with that obtained with collisionally induced dissociation of the ions in the electrospray ion source, and note that electron capture dissociation gives a more easily interpreted spectrum, showing mainly C-fragments. With the exception of the proline residues, which require cleavage of two chemical bonds, we observe all C-fragmental we find the bias voltage of the electron gun not to be very critical.
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Electron capture dissociation of the peptide Substance P is reported for the first time, with an unmodified, commercially available Fourier transform ion cyclotron resonance (FTICR) mass spectrometer. The fragmentation pattern is compared with that obtained with collisionally induced dissociation of the ions in the electrospray ion source, and note that electron capture dissociation gives a more easily interpreted spectrum, showing mainly C-fragments. With the exception of the proline residues, which require cleavage of two chemical bonds, we observe all C-fragmental we find the bias voltage of the electron gun not to be very critical.
Key concepts: Fourier transform ion cyclotron resonance, Chemistry, Ion cyclotron resonance, Mass spectrometry, Hybrid mass spectrometer, Selected ion monitoring, Dissociation (chemistry), Ion