Antigen-independent, autonomous B cell receptor signaling drives activated B cell DLBCL

Author:

Eken Janneke A.1ORCID,Koning Marvyn T.1ORCID,Kupcova Kristyna23ORCID,Sepúlveda Yáñez Julieta H.14ORCID,de Groen Ruben A.L.1ORCID,Quinten Edwin1ORCID,Janssen Jurriaan5ORCID,van Bergen Cornelis A.M.1ORCID,Vermaat Joost S.P.1ORCID,Cleven Arjen6ORCID,Navarrete Marcelo A.4ORCID,Ylstra Bauke5ORCID,de Jong Daphne5ORCID,Havranek Ondrej23ORCID,Jumaa Hassan7ORCID,Veelken Hendrik1ORCID

Affiliation:

1. Leiden University Medical Center 1 Department of Hematology, , Leiden, Netherlands

2. BIOCEV, First Faculty of Medicine, Charles University 2 , Prague, Czech Republic

3. General University Hospital and First Faculty of Medicine, Charles University 3 First Department of Internal Medicine—Hematology, , Prague, Czech Republic

4. School of Medicine, Universidad de Magallanes 4 , Punta Arenas, Chile

5. Amsterdam University Medical Center 5 Department of Pathology, , Amsterdam, Netherlands

6. Leiden University Medical Center 6 Department of Pathology, , Leiden, Netherlands

7. Institute of Immunology, University of Ulm 7 , Ulm, Germany

Abstract

Diffuse large B cell lymphoma of activated B cell type (ABC-DLBCL), a major cell-of-origin DLBCL subtype, is characterized by chronic active B cell receptor (BCR) signaling and NF-κB activation, which can be explained by activating mutations of the BCR signaling cascade in a minority of cases. We demonstrate that autonomous BCR signaling, akin to its essential pathogenetic role in chronic lymphocytic leukemia (CLL), can explain chronic active BCR signaling in ABC-DLBCL. 13 of 18 tested DLBCL-derived BCR, including 12 cases selected for expression of IgM, induced spontaneous calcium flux and increased phosphorylation of the BCR signaling cascade in murine triple knockout pre-B cells without antigenic stimulation or external BCR crosslinking. Autonomous BCR signaling was associated with IgM isotype, dependent on somatic BCR mutations and individual HCDR3 sequences, and largely restricted to non-GCB DLBCL. Autonomous BCR signaling represents a novel immunological oncogenic driver mechanism in DLBCL originating from individual BCR sequences and adds a new dimension to currently proposed genetics- and transcriptomics-based DLBCL classifications.

Funder

KWF Dutch Cancer Society

Agencia Nacional de Investigacion y Desarrollo

Doctorado Becas Chile

Czech Health Research Council

Charles University in Prague

National Institute for Cancer Research

European Union

Publisher

Rockefeller University Press

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