Literature DB >> 23151259

Characterization of fibrinogen glycosylation and its importance for serum/plasma N-glycome analysis.

Barbara Adamczyk1, Weston B Struwe, Altan Ercan, Peter A Nigrovic, Pauline M Rudd.   

Abstract

The majority of proteins present in human serum/plasma are glycoproteins, validating this fluid as an ideal starting material for N-glycan analysis and discovery of potential biomarkers. The glycoprotein content for both serum and plasma is very similar, except for proteins removed in the coagulation process, including fibrinogen. Our aim was to characterize fibrinogen glycosylation in order to determine its contribution to differences between serum and plasma N-glycomes. N-Glycans from human fibrinogen were released, labeled, and analyzed by HILIC-HPLC and MS. Structural characterization of fibrinogen subunits revealed that the α chain was not N-glycosylated, whereas β and γ contained identical oligosaccharide structures, mainly biantennary digalactosylated monosialylated structures (A2G2S1) and biantennary digalactosylated disialylated structures (A2G2S2). Blood was collected from five healthy volunteers into four testing tubes: silicone-coated glass for serum and EDTA, Na-heparin, and Li-heparin glass tubes for plasma. N-Glycans were analyzed using the high-throughput HILIC-HPLC method. N-Glycan profiles from serum and plasma samples differed largely in glycans identified in fibrinogen, suggesting that this glycoprotein represents a major factor distinguishing these body fluids. This result emphasizes the important of consistent body fluid collection practices in biomarker discovery studies.

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Year:  2012        PMID: 23151259     DOI: 10.1021/pr300813h

Source DB:  PubMed          Journal:  J Proteome Res        ISSN: 1535-3893            Impact factor:   4.466


  17 in total

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2.  High-level expression and preparation of recombinant human fibrinogen as biopharmaceuticals.

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4.  Developments and perspectives in high-throughput protein glycomics: enabling the analysis of thousands of samples.

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8.  A Comprehensive, Open-source Platform for Mass Spectrometry-based Glycoproteomics Data Analysis.

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9.  Ipomoeassin-F disrupts multiple aspects of secretory protein biogenesis.

Authors:  Peristera Roboti; Sarah O'Keefe; Kwabena B Duah; Wei Q Shi; Stephen High
Journal:  Sci Rep       Date:  2021-06-02       Impact factor: 4.379

10.  Changes in total plasma and serum N-glycome composition and patient-controlled analgesia after major abdominal surgery.

Authors:  Ivan Gudelj; Marco Baciarello; Ivo Ugrina; Manuela De Gregori; Valerio Napolioni; Pablo M Ingelmo; Dario Bugada; Simona De Gregori; Lovorka Đerek; Maja Pučić-Baković; Mislav Novokmet; Olga Gornik; Gloria Saccani Jotti; Tiziana Meschi; Gordan Lauc; Massimo Allegri
Journal:  Sci Rep       Date:  2016-08-09       Impact factor: 4.379

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