IgG1 B cell receptor signaling is inhibited by CD22 and promotes the development of B cells whose survival is less dependent on Igα/β

Author:

Waisman Ari1,Kraus Manfred123,Seagal Jane23,Ghosh Snigdha4,Melamed Doron235,Song Jian167,Sasaki Yoshiteru23,Classen Sabine1,Lutz Claudia8,Brombacher Frank9,Nitschke Lars4,Rajewsky Klaus123

Affiliation:

1. Institute for Genetics and

2. CBR Institute for Biomedical Research and

3. Department of Pathology, Harvard Medical School, Boston, MA 02115

4. Department of Genetics, University of Erlangen, 91058 Erlangen, Germany

5. Department of Immunology, Ruth and Bruce Rappaport Faculty of Medicine and Rappaport Family Institute for Research in the Medical Sciences, Technion-Israel Institute of Technology, Haifa 31096, Israel

6. Center for Molecular Medicine, University of Cologne, 50674 Cologne, Germany

7. I. Medical Department, Johannes Gutenberg-University Mainz, 55131 Mainz, Germany

8. Max-Planck-Institute of Immunobiology, 79011 Freiburg, Germany

9. Department of Immunology, Groote Schuur Hospital, University of Cape Town, Cape Town 7925, South Africa

Abstract

We describe a mouse strain in which B cell development relies either on the expression of membrane-bound immunoglobulin (Ig) γ1 or μ heavy chains. Progenitor cells expressing γ1 chains from the beginning generate a peripheral B cell compartment of normal size with all subsets, but a partial block is seen at the pro– to pre–B cell transition. Accordingly, γ1-driven B cell development is disfavored in competition with developing B cells expressing a wild-type (WT) IgH locus. However, the mutant B cells display a long half-life and accumulate in the mature B cell compartment, and even though partial truncation of the Igα cytoplasmic tail compromises their development, it does not affect their maintenance, as it does in WT cells. IgG1-expressing B cells showed an enhanced Ca2+ response upon B cell receptor cross-linking, which was not due to a lack of inhibition by CD22. The enhanced Ca2+ response was also observed in mature B cells that had been switched from IgM to IgG1 expression in vivo. Collectively, these results suggest that the γ1 chain can exert a unique signaling function that can partially replace that of the Igα/β heterodimer in B cell maintenance and may contribute to memory B cell physiology.

Publisher

Rockefeller University Press

Subject

Immunology,Immunology and Allergy

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