Differential Isotope Labeling of Glycopeptides for Accurate Determination of Differences in Site-Specific Glycosylation

Journal Article (2016)
Authors

Martin Pabst (ETH Zürich)

Iva Benešová (Masaryk University, ETH Zürich)

Stephan R. Fagerer (ETH Zürich)

Mathias Jacobsen (ETH Zürich)

Klaus Eyer (ETH Zürich)

Gregor Schmidt (ETH Zürich)

Robert F. Steinhoff (ETH Zürich)

Jasmin Krismer (ETH Zürich)

Fabian Wahl (Sigma-Aldrich)

G.B. More Authors (External organisation)

Affiliation
External organisation
To reference this document use:
https://doi.org/10.1021/acs.jproteome.5b00899
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Publication Year
2016
Language
English
Affiliation
External organisation
Issue number
1
Volume number
15
Pages (from-to)
326-331
DOI:
https://doi.org/10.1021/acs.jproteome.5b00899

Abstract

We introduce a stable isotope labeling approach for glycopeptides that allows a specific glycosylation site in a protein to be quantitatively evaluated using mass spectrometry. Succinic anhydride is used to specifically label primary amino groups of the peptide portion of the glycopeptides. The heavy form (D413C4) provides an 8 Da mass increment over the light natural form (H412C4), allowing simultaneous analysis and direct comparison of two glycopeptide profiles in a single MS scan. We have optimized a protocol for an in-solution trypsin digestion, a one-pot labeling procedure, and a post-labeling solid-phase extraction to obtain purified and labeled glycopeptides. We provide the first demonstration of this approach by comparing IgG1 Fc glycopeptides from polyclonal IgG samples with respect to their galactosylation and sialylation patterns using MALDI MS and LC-ESI-MS.

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