Cascade Dissociations of Peptide Cation-Radicals. Part 2. Infrared Multiphoton Dissociation and Mechanistic Studies of z-Ions from Pentapeptides

TitleCascade Dissociations of Peptide Cation-Radicals. Part 2. Infrared Multiphoton Dissociation and Mechanistic Studies of z-Ions from Pentapeptides
Publication TypeJournal Article
Year of Publication2012
AuthorsLedvina, AR, Chung, TW, Hui, RJ, Coon, JJ, Turecek, F
JournalJournal of the American Society for Mass Spectrometry
Volume23
Pagination1351-1363
Date PublishedAug
Type of ArticleArticle
ISBN Number1044-0305
Accession NumberWOS:000307355700006
Keywordsab-initio, Cascade dissociations, Electron transfer dissociation, Ab initio calculations, IRMPD, Energy-resolved CID, RRKM calculations, electron-transfer dissociation, energetics, gas-phase, isomerization, Mass-spectrometry, molecules, thermochemistry
Abstract

Dissociations of z(4) ions from pentapeptides AAXAR where X=H, Y, F, W, and V produce dominant z(2) ions that account for >50 % of the fragment ion intensity. The dissociation has been studied in detail by experiment and theory and found to involve several isomerization and bond-breaking steps. Isomerizations in z(4) ions proceed by amide trans -> cis rotations followed by radical-induced transfer of a beta-hydrogen atom from the side chain, forming stable C-beta radical intermediates. These undergo rate-determining cleavage of the C-alpha-CO bond at the X residue followed by loss of the neutral AX fragment, forming x(2) intermediates. The latter were detected by energy-resolved resonant excitation collision-induced dissociation (CID) and infrared multiphoton dissociation (IRMPD) experiments. The x(2) intermediates undergo facile loss of HNCO to form z(2) fragment ions, as also confirmed by energy-resolved CID and IRMPD MS4 experiments. The loss of HNCO from the x(2) ion from AAHWR is kinetically hampered by the Trp residue that traps the OCNH radical group in a cyclic intermediate.

Short TitleJ. Am. Soc. Mass Spectrom.