The unique 3D arrangement of macrophage galactose lectin enables Escherichia coli lipopolysaccharide recognition through two distinct interfaces

Author:

Abbas Massilia1,Maalej Meriem12,Nieto-Fabregat Ferran2,Thépaut Michel1,Kleman Jean-Philippe1ORCID,Ayala Isabel1ORCID,Molinaro Antonio2,Simorre Jean-Pierre1ORCID,Marchetti Roberta2ORCID,Fieschi Franck13ORCID,Laguri Cedric1ORCID

Affiliation:

1. Univ. Grenoble Alpes, CNRS, CEA, Institut de Biologie Structurale , Grenoble 38000 , France

2. Department of Chemical Sciences, University of Naples Federico II , Naples 80126 , Italy

3. Institut Universitaire de France (IUF) , Paris , France

Abstract

Abstract Lipopolysaccharides are a hallmark of gram-negative bacteria, and their presence at the cell surface is key for bacterial integrity. As surface-exposed components, they are recognized by immunity C-type lectin receptors present on antigen-presenting cells. Human macrophage galactose lectin binds Escherichia coli surface that presents a specific glycan motif. Nevertheless, this high-affinity interaction occurs regardless of the integrity of its canonical calcium-dependent glycan-binding site. NMR of macrophage galactose-type lectin (MGL) carbohydrate recognition domain and complete extracellular domain revealed a glycan-binding site opposite to the canonical site. A model of trimeric macrophage galactose lectin was determined based on a combination of small-angle X-ray scattering and AlphaFold. A disulfide bond positions the carbohydrate recognition domain perpendicular to the coiled-coil domain. This unique configuration for a C-type lectin orients the six glycan sites of MGL in an ideal position to bind lipopolysaccharides at the bacterial surface with high avidity.

Funder

Agence Nationale de la Recherche

European Research Council

CCRT High-Performance Computing

Fundamental Research Division

Publisher

Oxford University Press (OUP)

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