Skip to main content

Research Repository

Advanced Search

Synthesis of a B-Antigen Hexasaccharide, a B-Lewis b Heptasaccharide and Glycoconjugates Thereof to Investigate Binding Properties of Helicobacter pylori

Reihill, Mark; Fournière, Viviane; Cheallaigh, Aisling Ní; Edlund, Johan Olofsson; Miller, Gavin John; Borén, Thomas; Lahmann, Martina; Oscarson, Stefan

Synthesis of a B-Antigen Hexasaccharide, a B-Lewis b Heptasaccharide and Glycoconjugates Thereof to Investigate Binding Properties of Helicobacter pylori Thumbnail


Authors

Mark Reihill

Viviane Fournière

Aisling Ní Cheallaigh

Johan Olofsson Edlund

Gavin John Miller

Thomas Borén

Martina Lahmann

Stefan Oscarson



Abstract

AbstractInfecting the stomach of almost 50 % of people, Helicobacter pylori is a causative agent of gastritis, peptic ulcers and stomach cancers. Interactions between bacterial membrane‐bound lectin, Blood group Antigen Binding Adhesin (BabA), and human blood group antigens are key in the initiation of infection. Herein, the synthesis of a B‐antigen hexasaccharide (B6) and a B‐Lewis b heptasaccharide (BLeb7) and Bovine Serum Albumin glycoconjugates thereof is reported to assess the binding properties and preferences of BabA from different strains. From a previously reported trisaccharide acceptor a versatile key Lacto‐N‐tetraose tetrasaccharide intermediate was synthesized, which allowed us to explore various routes to the final targets, either via initial introduction of fucosyl residues followed by introduction of the B‐determinant or vice versa. The first approach proved unsuccessful, whereas the second afforded the target structures in good yields. Protein conjugation using isothiocyanate methodology allowed us to reach high glycan loadings (up to 23 per protein) to mimic multivalent displays encountered in Nature. Protein glycoconjugate inhibition binding studies were performed with H. pylori strains displaying high or low affinity for Lewis b hexasaccharide structures showing that the binding to the high affinity strain was reduced due to the presence of the B‐determinant in the Bleb7‐conjugates and further reduced by the absence of the Lewis fucose residue in the B6‐conjugate.

Journal Article Type Article
Acceptance Date Dec 23, 2022
Online Publication Date Dec 23, 2022
Publication Date Mar 16, 2023
Publicly Available Date May 30, 2023
Journal Chemistry – A European Journal
Print ISSN 0947-6539
Publisher Wiley
Volume 29
Issue 16
Article Number e202203672
DOI https://doi.org/10.1002/chem.202203672
Keywords General Chemistry, Catalysis, Organic Chemistry
Publisher URL https://chemistry-europe.onlinelibrary.wiley.com/doi/10.1002/chem.202203672
Additional Information
© 2022 The Authors.Chemistry- A European Journal published by Wiley-VCH GmbH. This is an open access article under the terms of the Creative Commons Attribution Non-Commercial NoDerivs License, which permits use and distribution in any medium, provided the original work is properly cited, the use is non-commercial and no modifications or adaptations are made

Files




You might also like



Downloadable Citations