IRF4 controls the positioning of mature B cells in the lymphoid microenvironments by regulating NOTCH2 expression and activity

Author:

Simonetti Giorgia1,Carette Amanda1,Silva Kathryn1,Wang Haowei2,De Silva Nilushi S.1,Heise Nicole1,Siebel Christian W.3,Shlomchik Mark J.224,Klein Ulf111

Affiliation:

1. Herbert Irving Comprehensive Cancer Center, Department of Pathology and Cell Biology, and Department of Microbiology and Immunology, Columbia University, New York, NY 10032

2. Department of Laboratory Medicine and Department of Immunobiology, Yale University School of Medicine, New Haven, CT 06520

3. Department of Molecular Biology, Genentech, Inc., South San Francisco, CA 94080

4. Department of Immunology, University of Pittsburgh School of Medicine, Pittsburgh, PA 15261

Abstract

The transcription factor interferon regulatory factor-4 (IRF4) is expressed in B cells at most developmental stages. In antigen-activated B cells, IRF4 controls germinal center formation, class-switch recombination, and the generation of plasma cells. Here we describe a novel function for IRF4 in the homeostasis of mature B cells. Inducible deletion of irf4 specifically in B cells in vivo led to the aberrant accumulation of irf4-deleted follicular B cells in the marginal zone (MZ) area. IRF4-deficient B cells showed elevated protein expression and activation of NOTCH2, a transmembrane receptor and transcriptional regulator known to be required for MZ B cell development. Administration of a NOTCH2-inhibitory antibody abolished nuclear translocation of NOTCH2 in B cells within 12 h and caused a rapid and progressive disintegration of the MZ that was virtually complete 48 h after injection. The disappearance of the MZ was accompanied by a transient increase of MZ-like B cells in the blood rather than increased B cell apoptosis, demonstrating that continued NOTCH2 activation is critical for the retention of B cells in the MZ. Our results suggest that IRF4 controls the positioning of mature B cells in the lymphoid microenvironments by regulating NOTCH2 expression. These findings may have implications for the understanding of B cell malignancies with dysregulated IRF4 and NOTCH2 activity.

Publisher

Rockefeller University Press

Subject

Immunology,Immunology and Allergy

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