Positive selection of IgG over IgM plasma cells through BCR isotype–specific antigen presentation and signaling

During a primary immune response, B cells can undergo isotype switching from an immunoglobulin M (IgM) B cell receptor (BCR) to an IgG BCR. B cells that have switched to IgG give rise to more bone marrow long-lived plasma cells (PCs) compared with those expressing IgM, but how BCR isotype-driven bias occurs remains unclear. Here, we found that IgG1-expressing germinal center B cells presented higher levels of antigen to T follicular helper cells, resulting in greater proliferation of IgG1 PCs than IgM PCs. BCR signaling through IgM induced more Bim-dependent apoptosis in IgM PCs, together leading to the predominance of IgG1 PCs in secondary lymphoid tissues. In addition, IgG1 PCs were more prone to migrating to bone marrow. Hence, our findings suggest that isotype-specific differences in antigen presentation and BCR signaling contribute to the enrichment of IgG1 PCs in the bone marrow long-lived PC compartment.

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Publication Details

Journal
Science Immunology
Published
2026-09-04
DOI
https://doi.org/10.1126/sciimmunol.aee8841
Citations
1
Primary Topic
T-cell and B-cell Immunology
Type
article
Field-Weighted Citation Impact
3.00

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article

Positive selection of IgG over IgM plasma cells through BCR isotype–specific antigen presentation and signaling

宏美 山本, Niklas Engels, Jürgen Wienands, Wataru Ise et al.
1 citations
Science Immunology
T-cell and B-cell Immunology
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article

Positive selection of IgG over IgM plasma cells through BCR isotype–specific antigen presentation and signaling

宏美 山本, Niklas Engels, Jürgen Wienands, Wataru Ise, Takeshi Inoue, Kyoko Shida, Tomohiro Kurosaki, Yuki Tai, Takuya Koike
article en
1 citations

Abstract

During a primary immune response, B cells can undergo isotype switching from an immunoglobulin M (IgM) B cell receptor (BCR) to an IgG BCR. B cells that have switched to IgG give rise to more bone marrow long-lived plasma cells (PCs) compared with those expressing IgM, but how BCR isotype-driven bias occurs remains unclear. Here, we found that IgG1-expressing germinal center B cells presented higher levels of antigen to T follicular helper cells, resulting in greater proliferation of IgG1 PCs than IgM PCs. BCR signaling through IgM induced more Bim-dependent apoptosis in IgM PCs, together leading to the predominance of IgG1 PCs in secondary lymphoid tissues. In addition, IgG1 PCs were more prone to migrating to bone marrow. Hence, our findings suggest that isotype-specific differences in antigen presentation and BCR signaling contribute to the enrichment of IgG1 PCs in the bone marrow long-lived PC compartment.

Science ImmunologyVol. 11(123)
Tokyo Medical University (JP), Tokyo University of Science (JP), Okayama University (JP), Universitätsmedizin Göttingen (DE), RIKEN Center for Integrative Medical Sciences (JP), Osaka International Cancer Institute (JP), Osaka Dental University (JP), The University of Osaka (JP)
Japan Agency for Medical Research and Development, Japan Society for the Promotion of Science
Openalex Percentile: Top 7%
T-cell and B-cell Immunology
3.00
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