Literature DB >> 10764604

Carbohydrate analysis of glycoprotein hormones.

G R Bousfield1, V L Baker, R R Gotschall, V Y Butnev.   

Abstract

Complete carbohydrate composition analysis of glycoprotein hormones, their subunits, and oligosaccharides isolated from individual glycosylation sites can be accomplished using high-pH anion-exchange chromatography combined with pulsed amperometric detection. Neutral and amino sugars are analyzed from the same hydrolyzate by isocratic chromatography on a Dionex CarboPAC PA1 column in 16 mM NaOH. Sialic acid is quantified following mild hydrolysis conditions on the same column in 150 mM sodium acetate in 150 mM NaOH. Ion chromatography on a Dionex AS4A column in 1.8 mM Na(2)CO(3)/1.7 mM NaHCO(3); postcolumn, in-line anion micromembrane suppression; and conductivity detection can be used to quantify sulfate, a common component of pituitary glycoprotein hormone oligosaccharides. Mass spectrometric analysis before and after elimination of oligosaccharides from a single glycosylation site can provide an estimate of the average oligosaccharide mass, which facilitates interpretation of oligosaccharide composition data. Following release by peptide N-glycanase (PNGase) digestion and purification by ultrafiltration, oligosaccharides can be characterized by a high-resolution oligosaccharide mapping technique using the same equipment employed for composition analysis. Oligosaccharide mapping can be applied to the entire hormone, individual subunits, or individual glycosylation sites by varying PNGase digestion conditions or substrates. Oligosaccharide release by PNGase is readily monitored by SDS-PAGE. Site-specific deglycosylation can be confirmed by amino acid sequence analysis. For routine isolation of oligosaccharides, addition of 2-aminobenzamide at the reducing terminus facilitates detection; however, the oligosaccharide retention times are altered. Composition analysis is also affected as the 2-aminobenzamide-modified GlcNAc peak overlaps the fucose peak. Copyright 2000 Academic Press.

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Year:  2000        PMID: 10764604     DOI: 10.1006/meth.2000.0972

Source DB:  PubMed          Journal:  Methods        ISSN: 1046-2023            Impact factor:   3.608


  5 in total

1.  Production, purification, and characterization of recombinant hFSH glycoforms for functional studies.

Authors:  Viktor Y Butnev; Vladimir Y Butnev; Jeffrey V May; Bin Shuai; Patrick Tran; William K White; Alan Brown; Aaron Smalter Hall; David J Harvey; George R Bousfield
Journal:  Mol Cell Endocrinol       Date:  2015-02-04       Impact factor: 4.102

Review 2.  Fshb Knockout Mouse Model, Two Decades Later and Into the Future.

Authors:  T Rajendra Kumar
Journal:  Endocrinology       Date:  2018-05-01       Impact factor: 4.736

3.  Hypo-glycosylated human follicle-stimulating hormone (hFSH(21/18)) is much more active in vitro than fully-glycosylated hFSH (hFSH(24)).

Authors:  George R Bousfield; Vladimir Y Butnev; Viktor Y Butnev; Yasuaki Hiromasa; David J Harvey; Jeffrey V May
Journal:  Mol Cell Endocrinol       Date:  2013-12-01       Impact factor: 4.102

4.  Glycoprotein profiling by electrospray mass spectrometry.

Authors:  Hui Jiang; Heather Desaire; Vladimir Y Butnev; George R Bousfield
Journal:  J Am Soc Mass Spectrom       Date:  2004-05       Impact factor: 3.109

5.  Naturally Occurring Follicle-Stimulating Hormone Glycosylation Variants.

Authors:  John S Davis; T Rajendra Kumar; Jeffrey V May; George R Bousfield
Journal:  J Glycomics Lipidomics       Date:  2014
  5 in total

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