N-linked glycosylation of the M-protein variable region: glycoproteogenomics reveals a new layer of personalized complexity in multiple myeloma

Author:

Langerhorst Pieter1,Baerenfaenger Melissa23,Kulkarni Purva145,Nadal Simon6ORCID,Wijnands Charissa1ORCID,Post Merel A.2,Noori Somayya7,vanDuijn Martijn M.7ORCID,Joosten Irma1,Dejoie Thomas8,van Gool Alain J.1,Gloerich Jolein1,Lefeber Dirk J.2,Wessels Hans J.C.T.1,Jacobs Joannes F.M.1

Affiliation:

1. Department of Laboratory Medicine , Radboud University Medical Center , Nijmegen , The Netherlands

2. Department of Neurology , Donders Institute for Brain, Cognition, and Behavior, Radboud University Medical Center , Nijmegen , The Netherlands

3. Division of BioAnalytical Chemistry , Vrije Universiteit Amsterdam , Amsterdam , The Netherlands

4. Department of Medical BioSciences , Radboud University Medical Center , Nijmegen , The Netherlands

5. Department of Human Genetics , Radboud University Medical Center , Nijmegen , The Netherlands

6. CY Cergy Paris Université, CNRS, BioCIS , Cergy-Pontoise , France

7. Department of Neurology , Erasmus University Medical Center , Rotterdam , The Netherlands

8. Biochemistry Laboratory , Centre Hospitalier Universitaire (CHU) , Nantes , France

Abstract

Abstract Objectives Multiple myeloma (MM) is a plasma cell malignancy characterized by a monoclonal expansion of plasma cells that secrete a characteristic M-protein. This M-protein is crucial for diagnosis and monitoring of MM in the blood of patients. Recent evidence has emerged suggesting that N-glycosylation of the M-protein variable (Fab) region contributes to M-protein pathogenicity, and that it is a risk factor for disease progression of plasma cell disorders. Current methodologies lack the specificity to provide a site-specific glycoprofile of the Fab regions of M-proteins. Here, we introduce a novel glycoproteogenomics method that allows detailed M-protein glycoprofiling by integrating patient specific Fab region sequences (genomics) with glycoprofiling by glycoproteomics. Methods Glycoproteogenomics was used for the detailed analysis of de novo N-glycosylation sites of M-proteins. First, Genomic analysis of the M-protein variable region was used to identify de novo N-glycosylation sites. Subsequently glycopeptide analysis with LC-MS/MS was used for detailed analysis of the M-protein glycan sites. Results Genomic analysis uncovered a more than two-fold increase in the Fab Light Chain N-glycosylation of M-proteins of patients with Multiple Myeloma compared to Fab Light Chain N-glycosylation of polyclonal antibodies from healthy individuals. Subsequent glycoproteogenomics analysis of 41 patients enrolled in the IFM 2009 clinical trial revealed that the majority of the Fab N-glycosylation sites were fully occupied with complex type glycans, distinguishable from Fc region glycans due to high levels of sialylation, fucosylation and bisecting structures. Conclusions Together, glycoproteogenomics is a powerful tool to study de novo Fab N-glycosylation in plasma cell dyscrasias.

Publisher

Walter de Gruyter GmbH

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