GM3, GM2 and GM1 mimics designed for biosensing: chemoenzymatic synthesis, target affinities and 900 MHz NMR analysis |
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Authors: | Pukin Aliaksei V Weijers Carel A G M van Lagen Barend Wechselberger Rainer Sun Bin Gilbert Michel Karwaski Marie-France Florack Dion E A Jacobs Bart C Tio-Gillen Anne P van Belkum Alex Endtz Hubert P Visser Gerben M Zuilhof Han |
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Affiliation: | a Laboratory of Organic Chemistry, Wageningen University, Dreijenplein 8, 6703 HB, Wageningen, The Netherlands b Department of NMR Spectroscopy, Utrecht University, Padualaan 8, 3584 CH Utrecht, The Netherlands c Institute for Biological Sciences, National Research Council Canada, 100 Sussex Drive, Ottawa, Ontario, Canada d Plant Research International, Droevendaalsesteeg 1, 6708 PB Wageningen, The Netherlands e Departments of Neurology and Immunology, Erasmus MC, ‘s-Gravedijkwal 230, 3015CE Rotterdam, The Netherlands f Department of Medical Microbiology and Infectious Diseases, Erasmus MC, ‘s-Gravedijkwal 230, 3015CE Rotterdam, The Netherlands g International Centre for Diarrhoeal Disease Research, GPO Box 128, Dhaka 1000, Bangladesh |
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Abstract: | Undec-10-enyl, undec-10-ynyl and 11-azidoundecyl glycoside analogues corresponding to the oligosaccharides of human gangliosides GM3, GM2 and GM1 were synthesized in high yields using glycosyltransferases from Campylobacter jejuni. Due to poor water solubility of the substrates, the reactions were carried out in methanol-water media, which for the first time were shown to be compatible with the C. jejuni α-(2→3)-sialyltransferase (CST-06) and β-(1→4)-N-acetylgalactosaminyltransferase (CJL-30). Bioequivalence of our synthetic analogues and natural gangliosides was examined by binding to Vibrio cholerae toxin and to the B subunit of Escherichia coli heat-labile enterotoxin. This bioequivalence was confirmed by binding mouse and human monoclonal antibodies to GM1 and acute phase sera containing IgM and IgG antibodies to GM1 from patients with the immune-mediated polyneuropathy Guillain-Barré syndrome. The synthesized compounds were analyzed by 1D and 2D 900 MHz NMR spectroscopy. TOCSY and DQF-COSY experiments in combination with 13C-1H correlation measurements (HSQC, HMBC) were carried out for primary structural characterization, and a complete assignment of all 1H and 13C chemical shifts is presented. |
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Keywords: | Enzymatic synthesis GM1 mimics Guillain-Barre syndrome NMR |
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