N, N-(2,4-Dinitrophenyl)octylamine Derivatives for the Isolation, Purification, and Mass Spectrometric Characterization of Oligosaccharides

A simple, sensitive method for the structural characterization of oligosaccharides by fast atom bombardment-mass spectrometry (FAB-MS) has been designed. Oligosaccharides are labeled with a uv chromophore (which also serves as a charge stabilizing group) and with a hydrophobic alkyl tail. The chromo...

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Veröffentlicht in:Analytical biochemistry 1993-02, Vol.208 (2), p.363-371
Hauptverfasser: Zhang, Y., Cedergren, R.A., Nieuwenhuis, T.J., Hollingsworth, R.I.
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Sprache:eng
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Zusammenfassung:A simple, sensitive method for the structural characterization of oligosaccharides by fast atom bombardment-mass spectrometry (FAB-MS) has been designed. Oligosaccharides are labeled with a uv chromophore (which also serves as a charge stabilizing group) and with a hydrophobic alkyl tail. The chromophore, a 2,4-dinitrophenyl group, aids uv detection during HPLC and stabilizes negative ion species formed during analysis by FAB-MS. The hydrophobic tail, provided by an octyl group, enhances the surface activity of the analytes and makes them amenable to separation by reverse-phase chromatography using a C18 bonded phase. This method was applied to the structural analysis of the components of a mixture of starch maltodextrins with a degree of polymerization 1-16, to the analysis of the structure of pure maltohexaose, and to a previously characterized oligosaccharide from a Rhizobium capsular polysaccharide. The method gave a good yield of [M-H] − anions for the derivatized compounds, which in most cases were detectable at a level of about 1 pmol. In the case of maltohexaose, four series of sequence anions corresponding to sequential loss of glycosyl residues from the reducing and nonreducing end by different mechanisms were observed. The mixture of derivatized malto-oligosaccharides could easily be separated by HPLC. Based on the relative proportions of the individual oligomers in the mixture calculated from HPLC analysis, even though the higher oligomers were present in amounts of about 0.1%, they could still be easily detected in mass spectra of the entire mixture. This represents an improvement in sensitivity of at least 100-fold of that reported using the aminobenzoic acid alkyl ester method. In the analyses reported here, single scans were taken and no attempts were made to improve signal to noise by signal averaging.
ISSN:0003-2697
1096-0309
DOI:10.1006/abio.1993.1062