N-Glycosylation of the Ig Receptors Shapes the Antigen Reactivity in Chronic Lymphocytic Leukemia Subset #201

Author:

Iatrou Anastasia12,Gounari Maria1,Sofou Electra1,Zaragoza-Infante Laura1ORCID,Markopoulos Ioannis1,Sarrigeorgiou Ioannis3ORCID,Petrakis Georgios4ORCID,Pechlivanis Nikolaos1,Roumeliotou-Dimou Maria5ORCID,Panayiotidis Panagiotis5,Stamatopoulos Basile6,Gkanidou Maria7,Sandaltzopoulos Rafael2,Degano Massimo8ORCID,Koletsa Triantafyllia4ORCID,Lymberi Peggy3ORCID,Psomopoulos Fotis1ORCID,Ghia Paolo9ORCID,Agathangelidis Andreas110ORCID,Chatzidimitriou Anastasia111,Stamatopoulos Kostas111

Affiliation:

1. *Institute of Applied Biosciences, Centre for Research & Technology Hellas, Thessaloniki, Greece

2. †Department of Molecular Biology and Genetics, Democritus University of Thrace, Alexandroupolis, Greece

3. ‡Immunology Laboratory, Immunology Department, Hellenic Pasteur Institute, Athens, Greece

4. §Pathology Department, Medical School, Aristotle University of Thessaloniki, Thessaloniki, Greece

5. ¶Hematology Section of the First Department of Propedeutic Internal Medicine, Laikon University Hospital, Athens, Greece

6. ‖Laboratory of Clinical Cell Therapy, Jules Bordet Institute, Free University of Brussels, Brussels, Belgium

7. #Blood Transfusion Department, G. Papanikolaou Hospital, Thessaloniki, Greece

8. **Biocrystallography Unit, Division of Immunology, Transplantation, and Infectious Diseases, IRCCS Scientific Institute San Raffaele, Milan, Italy

9. ††Division of Experimental Oncology, IRCCS Scientific Institute San Raffaele, Milan, Italy

10. ‡‡Department of Biology, School of Science, National and Kapodistrian University of Athens, Athens, Greece

11. §§Department of Molecular Medicine and Surgery, Karolinska Institute, Stockholm, Sweden

Abstract

Abstract Subset #201 is a clinically indolent subgroup of patients with chronic lymphocytic leukemia defined by the expression of stereotyped, mutated IGHV4-34/IGLV1-44 BCR Ig. Subset #201 is characterized by recurrent somatic hypermutations (SHMs) that frequently lead to the creation and/or disruption of N-glycosylation sites within the Ig H and L chain variable domains. To understand the relevance of this observation, using next-generation sequencing, we studied how SHM shapes the subclonal architecture of the BCR Ig repertoire in subset #201, particularly focusing on changes in N-glycosylation sites. Moreover, we profiled the Ag reactivity of the clonotypic BCR Ig expressed as rmAbs. We found that almost all analyzed cases from subset #201 carry SHMs potentially affecting N-glycosylation at the clonal and/or subclonal level and obtained evidence for N-glycan occupancy in SHM-induced novel N-glycosylation sites. These particular SHMs impact (auto)antigen recognition, as indicated by differences in Ag reactivity between the authentic rmAbs and germline revertants of SHMs introducing novel N-glycosylation sites in experiments entailing 1) flow cytometry for binding to viable cells, 2) immunohistochemistry against various human tissues, 3) ELISA against microbial Ags, and 4) protein microarrays testing reactivity against multiple autoantigens. On these grounds, N-glycosylation appears as relevant for the natural history of at least a fraction of Ig-mutated chronic lymphocytic leukemia. Moreover, subset #201 emerges as a paradigmatic case for the role of affinity maturation in the evolution of Ag reactivity of the clonotypic BCR Ig.

Publisher

The American Association of Immunologists

Subject

Immunology,Immunology and Allergy

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