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

Authors :
Langerhorst, Pieter
Baerenfaenger, Melissa
Kulkarni, Purva
Nadal, Simon
Wijnands, Charissa
Post, Merel A.
Noori, Somayya
Vanduijn, Martijn M.
Joosten, Irma
Dejoie, Thomas
Van Gool, Alain J.
Gloerich, Jolein
Lefeber, Dirk J.
Wessels, Hans J.C.T.
Jacobs, Joannes F.M.
Langerhorst, Pieter
Baerenfaenger, Melissa
Kulkarni, Purva
Nadal, Simon
Wijnands, Charissa
Post, Merel A.
Noori, Somayya
Vanduijn, Martijn M.
Joosten, Irma
Dejoie, Thomas
Van Gool, Alain J.
Gloerich, Jolein
Lefeber, Dirk J.
Wessels, Hans J.C.T.
Jacobs, Joannes F.M.
Source :
Langerhorst , P , Baerenfaenger , M , Kulkarni , P , Nadal , S , Wijnands , C , Post , M A , Noori , S , Vanduijn , M M , Joosten , I , Dejoie , T , Van Gool , A J , Gloerich , J , Lefeber , D J , Wessels , H J C T & Jacobs , J F M 2024 , ' N-linked glycosylation of the M-protein variable region : glycoproteogenomics reveals a new layer of personalized complexity in multiple myeloma ' , Clinical Chemistry and Laboratory Medicine , vol. 62 , no. 8 , pp. 1626-1635 .
Publication Year :
2024

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.

Details

Database :
OAIster
Journal :
Langerhorst , P , Baerenfaenger , M , Kulkarni , P , Nadal , S , Wijnands , C , Post , M A , Noori , S , Vanduijn , M M , Joosten , I , Dejoie , T , Van Gool , A J , Gloerich , J , Lefeber , D J , Wessels , H J C T & Jacobs , J F M 2024 , ' N-linked glycosylation of the M-protein variable region : glycoproteogenomics reveals a new layer of personalized complexity in multiple myeloma ' , Clinical Chemistry and Laboratory Medicine , vol. 62 , no. 8 , pp. 1626-1635 .
Notes :
application/pdf, English
Publication Type :
Electronic Resource
Accession number :
edsoai.on1430692009
Document Type :
Electronic Resource