Mechanism of CD79A and CD79B Support for IgM+ B Cell Fitness through B Cell Receptor Surface Expression

Author:

Huse Kanutte12ORCID,Bai Baoyan123,Hilden Vera I.12,Bollum Lise K.12,Våtsveen Thea K.24ORCID,Munthe Ludvig A.24ORCID,Smeland Erlend B.12,Irish Jonathan M.56ORCID,Wälchli Sébastien7ORCID,Myklebust June H.12

Affiliation:

1. *Department of Cancer Immunology, Institute for Cancer Research, Oslo University Hospital, Oslo, Norway;

2. †K.G. Jebsen Centre for B Cell Malignancies, Institute of Clinical Medicine, University of Oslo, Oslo, Norway;

3. ‡Department of Clinical Molecular Biology (EpiGen), Medical Division, Akershus University Hospital, Norway;

4. §Division of Clinical Medicine, Department of Immunology, Oslo University Hospital, Oslo, Norway;

5. ¶Department of Cell and Developmental Biology, Vanderbilt University, Nashville, TN;

6. ‖Department of Pathology, Microbiology and Immunology, Vanderbilt University Medical Center, Nashville, TN; and

7. #Translational Research Unit, Section for Cellular Therapy, Department of Cancer Treatment, Oslo University Hospital, Oslo, Norway

Abstract

Abstract The BCR consists of surface-bound Ig and a heterodimeric signaling unit comprised of CD79A and CD79B. Upon cognate Ag recognition, the receptor initiates important signals for B cell development and function. The receptor also conveys Ag-independent survival signals termed tonic signaling. Although the requirement of a CD79A/CD79B heterodimer for BCR complex assembly and surface expression is well established based on mice models, few studies have investigated this in human mature B cells. In this study, we found that human tonsillar B cells with high surface expression of IgM or IgG had potentiated BCR signaling compared with BCRlow cells, and high IgM expression in germinal center B cells was associated with reduced apoptosis. We explored the mechanism for IgM surface expression by CRISPR/Cas9-induced deletion of CD79A or CD79B in four B lymphoma cell lines. Deletion of either CD79 protein caused loss of surface IgM in all cell lines and reduced fitness in three. From two cell lines, we generated stable CD79A or CD79B knockout clones and demonstrated that loss of CD79A or CD79B caused a block in N-glycan maturation and accumulation of immature proteins, compatible with retention of BCR components in the endoplasmic reticulum. Rescue experiments with CD79B wild-type restored surface expression of CD79A and IgM with mature glycosylation, whereas a naturally occurring CD79B G137S mutant disrupting CD79A/CD79B heterodimerization did not. Our study highlights that CD79A and CD79B are required for surface IgM expression in human B cells and illuminates the importance of the IgM expression level for signaling and fitness.

Publisher

The American Association of Immunologists

Subject

Immunology,Immunology and Allergy

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