Minimal epitope for Mannitou IgM on paucimannose-carrying glycoproteins

Author:

Robakiewicz Stefania1,Bridot Clarisse1,Serna Sonia2,Gimeno Ana3,Echeverria Begoña2,Delgado Sandra3,de Ruyck Jérôme1,Semwal Shubham1,Charro Diego3,Dansercoer Ann4,Verstraete Kenneth4,Azkargorta Mikel3,van Noort Kim5,Wilbers Ruud H P5,Savvides Savvas N4,Abrescia Nicola G A36,Arda Ana36,Reichardt Niels C17,Jiménez-Barbero Jesús36,Bouckaert Julie1

Affiliation:

1. Unité de Glycobiologie Structurale et Fonctionnelle, UMR 8576 du CNRS et Université de Lille, 50 Avenue Halley, 59650 Villeneuve d'Ascq, France

2. Center for Cooperative Research in Biomaterials (CIC biomaGUNE), Basque Research and Technology Alliance (BRTA), Paseo Miramón 182, 20014 San Sebastian, Spain

3. Chemical Glycobiology lab, CIC bioGUNE, ProteoRed-ISCIII, CIBERehd, Basque Research & Technology Alliance (BRTA), Bizkaia Science and Technology park, 48160 Derio, Spain

4. Unit for Structural Biology, VIB – UGent Center for Inflammation Research, Department of Biochemistry and Microbiology, Ghent University, Technologiepark 71, 9052 Ghent, Belgium

5. Laboratory of Nematology, Plant Science Group, Wageningen University and Research, Droevendaalsesteeg 1, 6708 Wageningen, The Netherlands

6. IKERBASQUE, Basque Foundation for Science, 48009 Bilbao, Spain

7. CIBER de Bioingeniería, Biomateriales y Nanomedicina (CIBER-BBN), Instituto de Salud Carlos III, Madrid, Spain

Abstract

Abstract Paucimannosidic glycans are restricted to the core structure [Man1–3GlcNAc2Fuc0–1] of N-glycans and are rarely found in mammalian tissues. Yet, especially [Man2-3GlcNAc2Fuc1] have been found significantly upregulated in tumors, including in colorectal and liver cancer. Mannitou IgM is a murine monoclonal antibody that was previously shown to recognize Man3GlcNAc2 with an almost exclusive selectivity. Here, we have sought the definition of the minimal glycan epitope of Mannitou IgM, initiated by screening on a newly designed paucimannosidic glycan microarray; among the best binders were Man3GlcNAc2 and its α1,6 core-fucosylated variant, Man3GlcNAc2Fuc1. Unexpectedly and in contrast to earlier findings, Man5GlcNAc2-type structures bind equally well and a large tolerance was observed for substitutions on the α1,6 arm. It was confirmed that any substitution on the single α1,3-linked mannose completely abolishes binding. Surface plasmon resonance for kinetic measurements of Mannitou IgM binding, either directly on the glycans or as presented on omega-1 and kappa-5 soluble egg antigens from the helminth parasite Schistosoma mansoni, showed submicromolar affinities. To characterize the epitope in greater and atomic detail, saturation transfer difference nuclear magnetic resonance spectroscopy was performed with the Mannitou antigen-binding fragment. The STD-NMR data demonstrated the strongest interactions with the aliphatic protons H1 and H2 of the α1–3-linked mannose and weaker imprints on its H3, H4 and H5 protons. In conclusion, Mannitou IgM binding requires a nonsubstituted α1,3-linked mannose branch of paucimannose also on proteins, making it a highly specific tool for the distinction of concurrent human tumor-associated carbohydrate antigens.

Funder

VIB

Hercules Foundation infrastructure

Concerted Research Action grant from Ghent University

FWO

Severo Ochoa Excellence Accreditation

Spanish Ministerio de Ciencia, Innovacion y Universidades

National Agency for Research

Centre National de la Recherche Scientifique (CNRS) and the Ministère de l’Enseignement Supérieur et de la Recherche in France

European commission

Publisher

Oxford University Press (OUP)

Subject

Biochemistry

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