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Structural Insights into Polymorphic ABO Glycan Binding by Helicobacter pylori

Authors :
Stefan Oscarson
Jeanna Bugaytsova
Jay V. Solnick
Ema Romão
Lennart Hammarström
Martina Lahmann
Tor Ny
Gaetano Castaldo
Melissa Mendez
Suresh Subedi
Jenny Nordén
Anna Arnqvist
Pär Gideonsson
Fanny Coppens
Serge Muyldermans
Douglas E. Berg
Kristof Moonens
Mahsa Fallah
Lena Rakhimova
Thomas Borén
Guy Vandenbussche
Anna Shevtsova
Kristoffer Brännström
Han Remaut
Alvin W. Lo
Department of Bio-engineering Sciences
Structural Biology Brussels
Faculty of Sciences and Bioengineering Sciences
Source :
Cell host & microbe, vol 19, iss 1
Publication Year :
2016
Publisher :
Cell Press, 2016.

Abstract

The Helicobacter pylori adhesin BabA binds mucosal ABO/Le(b) blood group (bg) carbohydrates. BabA facilitates bacterial attachment to gastric surfaces, increasing strain virulence and forming a recognized risk factor for peptic ulcers and gastric cancer. High sequence variation causes BabA functional diversity, but the underlying structural-molecular determinants are unknown. We generated X-ray structures of representative BabA isoforms that reveal a polymorphic, three-pronged Le(b) binding site. Two diversity loops, DL1 and DL2, provide adaptive control to binding affinity, notably ABO versus O bg preference. H. pylori strains can switch bg preference with single DL1 amino acid substitutions, and can coexpress functionally divergent BabA isoforms. The anchor point for receptor binding is the embrace of an ABO fucose residue by a disulfide-clasped loop, which is inactivated by reduction. Treatment with the redox-active pharmaceutic N-acetylcysteine lowers gastric mucosal neutrophil infiltration in H. pylori-infected Le(b)-expressing mice, providing perspectives on possible H. pylori eradication therapies.

Details

Language :
English
Database :
OpenAIRE
Journal :
Cell host & microbe, vol 19, iss 1
Accession number :
edsair.doi.dedup.....2b318d4014ab4f0c4d65a611ec102194