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A novel highly charged exopolysaccharide produced by two strains of Stenotrophomonas maltophilia recovered from patients with cystic fibrosis
Authors:Cescutti Paola  Cuzzi Bruno  Liut Gianfranco  Segonds Christine  Di Bonaventura Giovanni  Rizzo Roberto
Affiliation:aDipartimento di Scienze della Vita, Università di Trieste, via L. Giorgieri 1, Ed. C11, 34127 Trieste, Italy;bLaboratoire de Bactériologie-Hygiène, Institut Fédératif de Biologie, Hôpital Purpan, CHU Toulouse, TSA 40031, 31059 Toulouse Cedex 9, France;cDipartimento di Scienze Biomediche, Università ‘G. d’Annunzio’ di Chieti-Pescara, Via dei Vestini, 31, 66100 Chieti, Italy;dCentro Scienze sull’Invecchiamento, Fondazione Università ‘G. d’Annunzio’ di Chieti-Pescara, Via Colle Dell’Ara, 66100 Chieti, Italy
Abstract:Stenotrophomonas maltophilia is a non-fermenting Gram-negative microorganism capable of causing chronic pulmonary infection in cystic fibrosis patients and its ability to form biofilms on polystyrene and glass surfaces, as well as on cystic fibrosis-derived bronchial epithelial IB3-I cells was recently demonstrated. The latter evidence might explain the power of S. maltophilia to produce persistent lung infections, despite intensive antibiotic treatment. In addition to being important components of the extracellular biofilm matrix, polysaccharides are involved in virulence, as they contribute to bacterial survival in a hostile environment. With the aim of contributing to the elucidation of S. maltophilia virulence factors, the exopolysaccharides produced by two mucoid clinical isolates of S. maltophilia obtained from two cystic fibrosis patients were completely characterised, mainly by means of ESI-MS and NMR spectroscopy. The results showed that, although the two isolates were recovered from two different patients living in different countries (Italy and France), the exopolysaccharides produced have an identical primary structure, with the following repeating unit:The exopolysaccharide is highly negatively charged for the presence of three uronic acids on four residues in the repeating unit. Moreover, an ether-linked d-lactate substituent is located on C-3 and one O-acetyl group on C-4 of the galacturonic acid side chain. Another O-acetyl group substitutes C-2 of the galacturonic acid in the backbone, making this primary structure unique.
Keywords:Abbreviations: Ac, acetyl   CF, cystic fibrosis   CFTR, cystic fibrosis transmembrane conductance regulator   deAc-SMA-EPS, S. maltophilia de-O-acetylated EPS   EPS, exopolysaccharide   ESI-MS, electrospray ionization mass spectrometry   FR-I, fraction I   FR-II, fraction II   FR-III, fraction III   FR-IV, fraction IV   FR-I.4, fraction I.4   Hex, hexose   HexA, hexuronic acid   Lac, lactate   SMA-EPS, S. maltophilia EPS   SMA-EPS-R, S. maltophilia carboxyl-reduced EPS   TMS, trimethylsilyl   YEM, yeast extract-mannitol
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