Peptide Rearrangement during Quadrupole Ion Trap Fragmentation:  Added Complexity to MS/MS Spectra

The emergence of proteomics has placed great interest in the understanding of the mechanisms of MS/MS fragmentation of peptides under low-energy collision-induced dissociation. In this work, we describe the presence of anomalous fragments, which correspond to neutral loss elimination of internal ami...

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Veröffentlicht in:Analytical chemistry (Washington) 2003-03, Vol.75 (6), p.1524-1535
Hauptverfasser: Yagüe, Jesús, Paradela, Alberto, Ramos, Manuel, Ogueta, Samuel, Marina, Anabel, Barahona, Fernando, López de Castro, José A, Vázquez, Jesús
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Sprache:eng
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Zusammenfassung:The emergence of proteomics has placed great interest in the understanding of the mechanisms of MS/MS fragmentation of peptides under low-energy collision-induced dissociation. In this work, we describe the presence of anomalous fragments, which correspond to neutral loss elimination of internal amino acids from ions of the b series in quadrupole ion trap MS/MS spectra from naturally occurring peptides. Internal amino acid elimination occurred preferentially with aliphatic amino acids. The phenomenon was more apparent when doubly charged precursors were fragmented and was inhibited when peptides were N-acetylated at the N-terminus. Fragmentation of isomeric peptides where some internal amino acids were relocated in N-terminal position produced MS n spectra indistinguishable from those of the original peptides, indicating that some b ions underwent a structural rearrangement process. Formation of anomalous fragments required a minimum activation time. Our data are consistent with a nucleophile attack of the N-terminal nitrogen over the electrophilic carbonyl carbon at one peptide bond, forming a cyclic b ion intermediate that, by reopening at preferential sites, exposes internal amino acids to the C-terminal side.
ISSN:0003-2700
1520-6882
DOI:10.1021/ac026280d