Mass Spectrometry-Based Glycoproteomic Approach Involving Lysine Derivatization for Structural Characterization of Recombinant Human Erythropoietin

Mario Cindrić,* Laura Bindila, Tina Čepo,* and Jasna Peter-Katalinić
PlivaResearch & Development Ltd., Prilaz baruna Filipovia 29, 10000 Zagreb, Croatia, and Institute for Medical Physics and Biophysics, Robert Koch Strasse 31, University of Mnster, 48149 Mnster, Germany
J. Proteome Res., 2006, 5 (11), pp 3066–3076
DOI: 10.1021/pr060177d
Publication Date (Web): September 23, 2006
Copyright © 2006 American Chemical Society
*

 To whom correspondence should be addressed. M. Cindrić, PlivaResearch & Development, Ltd., Prilaz baruna Filipovića 29, 10000 Zagreb, Croatia. Phone:  +38513723747. Fax:  +38513721514. E-mails:  mario.cindric@ pliva.hr (for M.C.) or tina.cepo@pliva.hr (for T.C.).

,

 PlivasResearch & Development Ltd.

,

 University of Münster.

Abstract

Abstract Image

Lysine-containing peptides comprising glycosylation sites derived from recombinant human erythropoietin (rHuEPO) by trypsin or Lys-C and PNGase F dual digestion were derivatized with 2-methoxy-4,5-dihydro-1H-imidazole and its deuterated analogues. In the same reaction, under reducing conditions (β-mercaptoethanol), cysteines were converted into methyl-cysteines and lysines into Lys-4,5-dihydro-1H-imidazole. Both modifications on cysteines and lysines simplified the CID-MS/MS spectra, while preserving the structural information by yielding y-series ions and improved the mass spectral signal intensity up to 25 times. Moreover, by this approach, the N-glycan occupation sites were unambiguously determined. O-Glycosylation sites as well as O-glycan structures were determined by a LC−MS/MS experiment carried out on dually digested rHuEPO. N-Glycan mixture purified on a graphitized carbon column using a newly developed method that extracted only sialylated carbohydrates was analyzed first using MALDI-TOF in negative linear ion mode with low mass accuracy but without interferences and metastabile ions and then areflectron with high mass accuracy. After defining the precursor ions, we performed the nanoESI QTOF MS/MS analysis on N-glycans, mainly targeting the distinction between carbohydrates with sialylated antennae and those lacking sialic acid moieties.

Keywords: rHuEPO glycosylation • Lys-4,5-dihydro-1H-imidazole • N-glycans • O-glycopeptides • MALDI-TOF • LC−MS/MS • nanoESI MS/MS

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History

  • Published In Issue November 03, 2006
  • Received April 19, 2006

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