IgH isotype-specific B cell receptor dosage regulates B cell fate
作者
Duane R. Wesemann,Alessandra Granato,Pei Tong,Teng Zuo,Neha Chaudhary,Seung Seok Han
出处
期刊:Journal of Immunology [American Association of Immunologists] 日期:2017-05-01卷期号:198 (Supplement_1): 74.18-74.18
标识
DOI:10.4049/jimmunol.198.supp.74.18
摘要
Abstract Immunoglobulin heavy chain (IgH) isotypes (e.g. IgM, IgG and IgE) are generated as secreted/soluble antibodies (sIg) or as membrane-bound (mIg) B cell receptors (BCR) through alternative RNA splicing. IgH isotype dictates soluble antibody function, but how mIg isotype influences B cell behavior is unclear. We examined IgH isotype-specific BCR function by engineering polyclonal Ighγ1/γ1 and Ighɛ/ɛ mice, which initially produce IgG1 or IgE from their respective native genomic configurations. Transcripts producing IgM, IgG1, and IgE are produced in an alternative splice form bias hierarchy, where mIgμ>mIgγ1>mIgɛ—influencing respective BCR densities and fitness for populating the periphery—a pattern replicated in activated and memory B cells from wild-type mice. Restrained B cell development from Ighγ1/γ1 and Ighɛ/ɛ mice was proportional to sIg/mIg ratios, and was rescued by enforced expression of the respective mIgs. In addition, enhanced BCR signaling by way of PTEN deletion in IgE B cells generated functional IgE memory responses from IgE memory B cells themselves, which are normally absent under normal conditions, indicating that weak signal strength normally restrains IgE responses. Thus, IgH isotype-specific mIg dosage regulates B cell fate by influencing quantitative baseline BCR signal strength.