4.7 Article

Neutral Loss Is a Very Common Occurrence in Phosphotyrosine-Containing Peptides Labeled with Isobaric Tags

Journal

JOURNAL OF PROTEOME RESEARCH
Volume 16, Issue 2, Pages 1069-1076

Publisher

AMER CHEMICAL SOC
DOI: 10.1021/acs.jproteome.6b00487

Keywords

tandem mass tag; isobaric tag phosphotyrosine; neutral loss; proton mobility; phosphorylation; immonium ion; high-energy collision-induced dissociation; site localization

Funding

  1. NIH [P50-GM107618, U54HL127365, GM67945]

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While developing a multiplexed phosphotyrosine peptide quantification assay, an unexpected observation was made: significant neutral loss from phosphotyrosine (pY) containing peptides. Using a 2000-member peptide library, we sought to systematically investigate this observation by comparing unlabeled peptides with the two highest-plex isobaric tags (iTRAQS and TMT10) across CID, HCD, and ETD fragmentation using high resolution high mass accuracy Orbitrap instrumentation. We found pY peptide neutral loss behavior was consistent with reduced proton mobility, and does not occur during ETD. The site of protonation at the peptide N-terminus changes from a primary to a tertiary amine as a result of TMT labeling which would increase the gas phase basicity and reduce proton mobility at this site. This change in fragmentation behavior has implications during instrument method development and interpretation of MS/MS spectra, and therefore ensuing follow-up studies. We show how sites not localized to tyrosine by search and site localization algorithms can be confidently reassigned to tyrosine using neutral loss and phosphotyrosine immonium ions. We believe these findings will be of general interest to those studying pY signal transduction using isobaric tags.

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