| Literature DB >> 29858229 |
Kristof Moonens1,2, Youssef Hamway3, Matthias Neddermann4, Marc Reschke5, Nicole Tegtmeyer4, Tobias Kruse6, Robert Kammerer7, Raquel Mejías-Luque3,8, Bernhard B Singer5, Steffen Backert4, Markus Gerhard3,8, Han Remaut9,2.
Abstract
The human gastric pathogen Helicobacter pylori is a major causative agent of gastritis, peptic ulcer disease, and gastric cancer. As part of its adhesive lifestyle, the bacterium targets members of the carcinoembryonic antigen-related cell adhesion molecule (CEACAM) family by the conserved outer membrane adhesin HopQ. The HopQ-CEACAM1 interaction is associated with inflammatory responses and enables the intracellular delivery and phosphorylation of the CagA oncoprotein via a yet unknown mechanism. Here, we generated crystal structures of HopQ isotypes I and II bound to the N-terminal domain of human CEACAM1 (C1ND) and elucidated the structural basis of H. pylori specificity toward human CEACAM receptors. Both HopQ alleles target the β-strands G, F, and C of C1ND, which form the trans dimerization interface in homo- and heterophilic CEACAM interactions. Using SAXS, we show that the HopQ ectodomain is sufficient to induce C1ND monomerization and thus providing H. pylori a route to influence CEACAM-mediated cell adherence and signaling events.Entities:
Keywords: zzm321990Helicobacter pylorizzm321990; CEACAM1; CagA delivery; HopQ; bacterial adhesion
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Year: 2018 PMID: 29858229 PMCID: PMC6028033 DOI: 10.15252/embj.201798665
Source DB: PubMed Journal: EMBO J ISSN: 0261-4189 Impact factor: 11.598