Relative Specificities of Water and Ammonia Losses from Backbone Fragments in Collision-Activated Dissociation

peer-reviewed · Journal of Proteome Research · 2007

peer-reviewed · Journal of Proteome Research · 2007. Mikhail M. Savitski et al. Analysis of a database containing over 20,000 high-resolution collision-activation mass spectra of tryptic…
Date 2007-07-01
Type peer-reviewed
Venue Journal of Proteome Research
Publisher American Chemical Society (ACS)
Contribution adjacent
DOI 10.1021/pr070121z
Citations (OpenAlex) 27
Venue 2-year citedness 3.83

Abstract

Analysis of a database containing over 20,000 high-resolution collision-activation mass spectra of tryptic peptide dications was employed to study the relative specificity of neutral losses from backbone fragments. The high resolution of the FTMS instrument allowed for the first time the first isotope of the water loss and the monoisotope of the ammonia loss to be distinguished. Contrary to a popular belief, water losses from y’ ions are not specific enough to rely upon for detecting the presence of amino acids with oxygen in the side chains. At the same time, ammonia loss from b ions is sufficiently specific (>95%) to detect the presence of amino acids Gln, Asn, His, Lys, and Arg. This feature will be useful for de novo algorithms for high-resolution MS data. Clear trends were observed when the effect of amino acids proximate to the cleavage site on the rate of loss formation was studied. These trends turned out to be different for losses from b and y ions.

Authors

  1. Mikhail M. Savitski · Uppsala University
  2. Frank Kjeldsen · University of Southern Denmark, Uppsala University
  3. Michael L. Nielsen · Uppsala University
  4. Roman A. Zubarev · Cornell University, Karolinska Institutet, Uppsala University

Methods and tools

  • Neutral-loss specificity for de novo: Shows from 20,000 high-resolution spectra that ammonia loss from b ions reliably flags Q, N, H, K and R, a constraint for de novo sequencing.

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