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Multivalent Thiosialosides and Their Synergistic Interaction with Pathogenic Sialidases
Authors:Dr Yoan Brissonnet  Coralie Assailly  Dr Amélie Saumonneau  Dr Julie Bouckaert  Dr Mike Maillasson  Clémence Petitot  Benoit Roubinet  Dr Blanka Didak  Dr Ludovic Landemarre  Dr Clarisse Bridot  Dr Ralf Blossey  Prof?Dr David Deniaud  Dr Xibo Yan  Dr Julien Bernard  Prof?Dr Charles Tellier  Dr Cyrille Grandjean  Dr Franck Daligault  Dr Sébastien G Gouin
Institution:1. CEISAM, Chimie Et Interdisciplinarité, Synthèse, Analyse, Modélisation, UMR CNRS 6230, UFR des Sciences et des Techniques, Université de Nantes, 2 rue de la Houssinière, BP 92208, 44322 Nantes Cedex 3, France;2. UFR des Sciences et des Techniques, Université de Nantes, UFIP, UMR CNRS 6286, 2 rue de la Houssinière, BP 92208, 44322 Nantes Cedex 3, France;3. Unité de Glycobiologie Structurale et Fonctionnelle (UGSF), UMR8576 CNRS, Université de Lille 1, Lille, 59000 France;4. Impact biogeneouest, CRCINA, Inserm, CNRS, Université de Nantes, Nantes, France;5. Bâtiment Physique-Chimie, Glycodiag, Rue de Chartres, BP6759, 45067 Orléans cedex 2, France;6. Université de Lyon, Lyon, 69003 (France), INSA- Lyon, IMP, Villeurbanne, 69621, France, CNRS, UMR 5223, Ingénierie des Matériaux Polymères, Villeurbanne, 69621, France
Abstract:Sialidases (SAs) hydrolyze sialyl residues from glycoconjugates of the eukaryotic cell surface and are virulence factors expressed by pathogenic bacteria, viruses, and parasites. The catalytic domains of SAs are often flanked with carbohydrate-binding module(s) previously shown to bind sialosides and to enhance enzymatic catalytic efficiency. Herein, non-hydrolyzable multivalent thiosialosides were designed as probes and inhibitors of V. cholerae, T. cruzi, and S. pneumoniae (NanA) sialidases. NanA was truncated from the catalytic and lectinic domains (NanA-L and NanA-C) to probe their respective roles upon interacting with sialylated surfaces and the synthetically designed di- and polymeric thiosialosides. The NanA-L domain was shown to fully drive NanA binding, improving affinity for the thiosialylated surface and compounds by more than two orders of magnitude. Importantly, each thiosialoside grafted onto the polymer was also shown to reduce NanA and NanA-C catalytic activity with efficiency that was 3000-fold higher than that of the monovalent thiosialoside reference. These results extend the concept of multivalency for designing potent bacterial and parasitic sialidase inhibitors.
Keywords:enzymes  glycoclusters  glycosidases  inhibition  sialidases
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