Structural Reinvestigation of the Core Oligosaccharide of a Mutant Form of Aeromonas Salmonicida Lipopolysaccharide Containing an O-4 Phosphorylated and O-5 Substituted Kdo Reducing end Group Using Electrospray Quadrupole Time of Flight Tandem Mass Spectrometry

Author:

Banoub Joseph12,Cohen Alejandro2,Aneed Anas El2,LeQuart Vincent3,Martin Patrick3

Affiliation:

1. Department of Fisheries and Oceans Science, Oceans and Environment Branch, Special Projects, PO Box 5667, St. John's, NL A1C 5X1, Canada

2. Memorial University of Newfoundland, Biochemistry Department, St. John's NL A1C 5S7, Canada

3. IUT Bethune, Departement de Chimie, Université d'Artois, Bethune, France

Abstract

The molecular structure of the mutant form of the lipopolysaccharide (LPS) of Aeromonas salmonicida was determined to contain an O-4 phosphorylated and O-5 substituted Kdo reducing group, and is proposed as the following: It was established that during the cleavage of this LPS with 1% acetic acid, to release the core oligosaccharide from the Lipid A portion, we obtained a degraded core oligosaccharide which eliminated its phosphate group with extreme ease. The precise molecular structure of this dephosphorylated core was deduced by electrospray mass spectrometry and is proposed as the following: Low-energy collision electrospray ionization quadrupole quadrupole time-of-flight tandem mass spectrometry (ESI-QqToF-MS/MS) analysis of the dephosphorylated core oligosaccharide confirmed the presence of the O-5 glycosylated 4,8- and 4,7-anhydro derivatives of the enolizable α-keto-acids. The collision-induced dissociation (CID) tandem mass spectrometric analysis of the heterogeneous mixture of the permethylated core oligosaccharide established the unreported methylation reaction on the diastereomeric 4,8- and 4,7-anhydro α-keto-acids and the complete permethylation and addition reaction of the O-5 glycosylated open chain reducing end terminal D- arabino-3-en-2-ulonic acid. The stereo-specific fragmentation routes obtained during the tandem mass spectrometric analysis permitted the precise sequencing of this dephosphorylated rough core oligosaccharide of the mutant LPS of A. salmonicida.

Publisher

SAGE Publications

Subject

Spectroscopy,Atomic and Molecular Physics, and Optics,General Medicine

Reference36 articles.

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3. BIOCHEMISTRY OF ENDOTOXINS

4. Holst O., Brade H., in Bacterial Endotoxic Lipopolysaccharides, Vol. 1, Molecular Biochemistry and Cellular Biology, Ed by Morrison D.C., Ryan J.L., CRC Press, Boca Raton, Florida, USA, p. 135 (1992).

5. Lüderitz O., Freudenberg M.A., Galanos C., Lehmann V., Rietschel E.T., Shaw D.H., in Current Topics in Membranes, Vol. 17, Microbiological Membrane Lipids, Ed by Razin C.S., Rottem S., Academic Press, New York, USA, p. 79 (1982).

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