AI Article Synopsis

  • Bioactive carbohydrates play a key role in various biological processes, and understanding their biosynthesis is vital for exploring their functions.
  • Lactobacillus helveticus NCC2745 has been found to produce a new type of exocellular polysaccharide, with the discovery of its specific gene cluster being significant for future research.
  • A novel enzymatic assay has been developed to determine sugar specificities in glycosyltransferases, allowing for faster characterization, while a biosynthesis model of the polysaccharide's repeating unit is proposed, detailing the roles of enzymes EpsE through EpsJ in chain formation.

Article Abstract

Bioactive carbohydrates are crucial in mediating essential biological processes, and their biosynthesis is an essential aspect to develop for a global view of their biological functions. Lactic acid bacteria display an array of diverse and complex carbohydrates and, therefore, are of particular interest. Here we present the identification of a novel exocellular polysaccharide structure and the corresponding gene cluster from Lactobacillus helveticus NCC2745. The development of a glycosyltransferase-specific enzymatic assay allowed the assignment of sugar specificities, which as a general approach will for the future permit a faster and more direct characterization of glycosyltransferase specificities. A model of the biosynthesis of the repeating unit is proposed. EpsE is a phosphoglucosyltransferase initiating the repeating unit biosynthesis by linking a glucose residue to a membrane-associated lipophilic acceptor. EpsF elongates the carbohydrate chain by forming an alpha(1,3)-Glcp linkage onto the first Glcp, whereas EpsG adds a backbone alpha(1,6)-Galp onto alpha-Glcp and EpsH attaches a alpha(1,6)-Glcp branch onto the first glucose residue. Finally, EpsI would add a beta(1,6)-Galp linkage onto alpha-Glcp terminating the sidechain and EpsJ would terminate the synthesis of the polysaccharides' repeating unit by forming a beta(1,3)-Galp linkage onto alpha-Galp.

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Source
http://dx.doi.org/10.1093/glycob/12.5.319DOI Listing

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