Protein arginine methyltransferase 1 regulates B cell fate after positive selection in the germinal center in mice

Author:

Litzler Ludivine C.1ORCID,Zahn Astrid1ORCID,Dionne Kiersten L.12ORCID,Sprumont Adrien1ORCID,Ferreira Silvana R.1ORCID,Slattery Michael R.F.12ORCID,Methot Stephen P.1ORCID,Patenaude Anne-Marie1ORCID,Hébert Steven3ORCID,Kabir Nisha34ORCID,Subramani Poorani Ganesh15ORCID,Jung Seolkyoung6ORCID,Richard Stéphane34578ORCID,Kleinman Claudia L.34ORCID,Di Noia Javier M.1259ORCID

Affiliation:

1. Institut de Recherches Cliniques de Montréal 1 , Montreal, Canada

2. McGill University 2 Department of Microbiology and Immunology, , Montreal, Canada

3. Lady Davis Institute for Medical Research 3 , Montreal, Canada

4. McGill University 4 Department of Human Genetics, , Montreal, Canada

5. McGill University 5 Department of Medicine, , Montreal, Canada

6. National Institutes of Health 6 Biodata Mining and Discovery Section, National Institute of Arthritis and Musculoskeletal and Skin Diseases, , Bethesda, MD, USA

7. McGill University 7 Gerald Bronfman Departments of Oncology, , Montreal, Canada

8. McGill University 8 Department of Biochemistry, , Montreal, Canada

9. Université de Montréal 9 Department of Medicine, , Montreal, Canada

Abstract

Positively selected germinal center B cells (GCBC) can either resume proliferation and somatic hypermutation or differentiate. The mechanisms dictating these alternative cell fates are incompletely understood. We show that the protein arginine methyltransferase 1 (Prmt1) is upregulated in murine GCBC by Myc and mTORC-dependent signaling after positive selection. Deleting Prmt1 in activated B cells compromises antibody affinity maturation by hampering proliferation and GCBC light zone to dark zone cycling. Prmt1 deficiency also results in enhanced memory B cell generation and plasma cell differentiation, albeit the quality of these cells is compromised by the GCBC defects. We further demonstrate that Prmt1 intrinsically limits plasma cell differentiation, a function co-opted by B cell lymphoma (BCL) cells. Consistently, PRMT1 expression in BCL correlates with poor disease outcome, depends on MYC and mTORC1 activity, is required for cell proliferation, and prevents differentiation. Collectively, these data identify PRMT1 as a determinant of normal and cancerous mature B cell proliferation and differentiation balance.

Funder

Cancer Research Society

Bergeron-Jetté Foundation

Canadian Institutes of Health Research

Fondation de recherche en Santé de Québec

Cole Foundation

Publisher

Rockefeller University Press

Subject

Immunology,Immunology and Allergy

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