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STUDIES OF POLYSACCHARIDES FROM THREE EDIBLE SPECIES OF NOSTOC (CYANOBACTERIA) WITH DIFFERENT COLONY MORPHOLOGIES: STRUCTURAL CHARACTERIZATION AND EFFECT ON THE COMPLEMENT SYSTEM OF POLYSACCHARIDES FROM NOSTOC COMMUNE 
Authors:Lars P. Brü  ll,Zebo Huang,Jane E. Thomas-Oates,Berit Smestad Paulsen,Ellen Hanne Cohen,Terje E. Michaelsen
Affiliation:Netherlands Organization for Applied Scientific Research, TNO Food and Nutrition, Utrechtseweg 48, P.O. Box 360, 3700 AJ, Zeist, The Netherlands;Institute of Hydrobiology, The Chinese Academy of Sciences, Wuhan, 430072, P.R. China;Michael Barber Centre for Mass Spectrometry, Department of Chemistry, UMIST, P.O. Box 88, Manchester, M60 1QD,; United KingdomDepartment of Pharmacognosy, School of Pharmacy, University of Oslo, P.O. Box 1068, Blindern, N-0316 Oslo, Norway;Department of Vaccinology, National Institute of Public Health, P.O. Box 4404 Torshov, N-0403 Oslo, Norway
Abstract:The cyanobacterium Nostoc commune Vaucher produces quite complex extracellular polysaccharides. The cyanobacterium is nitrogen fixing, and on growing the cyanobacterium in media with and without nitrogen, different types of extracellular polysaccharides were obtained. These were also different from the polysaccharides present in N. commune collected in the field. High pH anion exchange chromatography (HPAEC) of weak acid hydrolysates of the culture-grown material demonstrated that, in this case, HPAEC was useful for comparison of the different polymers. The main differences between the polymers from the field group and the culture-grown samples were the presence of substantial amounts of arabinose, 2- O -methylglucose, and glucuronic acid in the latter. Methylation studies also revealed a difference in the branching points on the glucose units between the field and cultured samples, being 1,4,6 for the first and 1,3,6 for the latter. The field acidic fraction gave, on weak acid hydrolysis and separation on BioGel P2 and HPAEC, 12 oligosaccharide fractions that were isolated and studied by different mass spectroscopy techniques. The structures of the oligosaccharides were determined, and two different series that can originate from two repeating pentamers were identified: GlcA1-4/6GlcM1-4Gal1-4Glc1-4Xyl and GlcA1-4/6Glc1-4Gal1-4Glc1-4Xyl. The difference between these oligosaccharides lies in the methyl substituent on carbon 2 of the glucose unit next to the nonreducing glucuronic acid unit. The polysaccharides from field material were shown to have a strong effect on the complement system.
Keywords:complement activity    Cyanobacteria    HPAEC    2-O-methylglucose    Nostoc commune    oligosaccharide profiles    polysaccharides
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