Pseudomonas aeruginosaLecB suppresses immune responses by inhibiting transendothelial migration

Author:

Sponsel Janina123,Guo Yubing123ORCID,Hamzam Lutfir1,Lavanant Alice C1ORCID,Pérez‐Riverón Annia1,Partiot Emma45,Muller Quentin16ORCID,Rottura Julien1ORCID,Gaudin Raphael45ORCID,Hauck Dirk789,Titz Alexander789ORCID,Flacher Vincent1ORCID,Römer Winfried2310ORCID,Mueller Christopher G1ORCID

Affiliation:

1. CNRS UPR 3572 IBMC, University of Strasbourg Strasbourg France

2. Signalling Research Centers BIOSS and CIBSS University of Freiburg Freiburg Germany

3. Faculty of Biology University of Freiburg Freiburg Germany

4. CNRS Institut de Recherche en Infectiologie de Montpellier (IRIM) Montpellier France

5. Université de Montpellier Montpellier France

6. Laboratoire BIOTIS, Inserm U1026 Université de Bordeaux Bordeaux France

7. Chemical Biology of Carbohydrates (CBCH) Helmholtz Institute for Pharmaceutical Research Saarland (HIPS), Helmholtz Centre for Infection Research Saarbrücken Germany

8. Deutsches Zentrum für Infektionsforschung (DZIF) Standort Hannover‐Braunschweig Germany

9. Department of Chemistry Saarland University Saarbrücken Germany

10. Freiburg Institute for Advanced Studies (FRIAS) University of Freiburg Freiburg Germany

Abstract

AbstractPseudomonas aeruginosa is a Gram‐negative bacterium causing morbidity and mortality in immuno‐compromised humans. It produces a lectin, LecB, that is considered a major virulence factor, however, its impact on the immune system remains incompletely understood. Here we show that LecB binds to endothelial cells in human skin and mice and disrupts the transendothelial passage of leukocytes in vitro. It impairs the migration of dendritic cells into the paracortex of lymph nodes leading to a reduced antigen‐specific T cell response. Under the effect of the lectin, endothelial cells undergo profound cellular changes resulting in endocytosis and degradation of the junctional protein VE‐cadherin, formation of an actin rim, and arrested cell motility. This likely negatively impacts the capacity of endothelial cells to respond to extracellular stimuli and to generate the intercellular gaps for allowing leukocyte diapedesis. A LecB inhibitor can restore dendritic cell migration and T cell activation, underlining the importance of LecB antagonism to reactivate the immune response against P. aeruginosa infection.

Funder

Agence Nationale de la Recherche

Publisher

Springer Science and Business Media LLC

Subject

Genetics,Molecular Biology,Biochemistry

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