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Updated: Mar 21, 2026

Examination of Thymic Positive and Negative Selection by Flow Cytometry
Published on: October 8, 2012
CD23 can negatively regulate B-cell receptor signaling
Chaohong Liu1, Katharina Richard2, Melvin Wiggins3
1Department of Pathogen Biology, School of Basic Medicine, Huazhong University of Science and Technology, Wuhan 430030, China.
Insights
CD23 negatively regulates B-cell receptor (BCR) signaling by affecting cell morphology and actin-mediated clustering during B-cell activation. This study reveals a novel role for CD23 in controlling early B-cell responses.
Area of Science:
- Immunology
- Cell Biology
Background:
- CD23 is known to regulate IgE and IgG antibody responses.
- Its role in B-cell activation is not fully understood.
Purpose of the Study:
- To investigate the function of CD23 in B-cell activation.
- To examine the impact of CD23 on early B-cell receptor (BCR) signaling.
Main Methods:
- Analysis of CD23 expression in peripheral B cell subsets.
- Utilizing CD23 knockout (KO) mice to study B-cell activation.
- Assessing B-cell spreading, BCR clustering, and signaling molecule phosphorylation.
Main Results:
- Mature follicular B cells downregulate CD23 after isotype switching and memory differentiation.
- CD23 KO B cells show enhanced cell spreading and BCR clustering upon antigen stimulation.
- Increased phosphorylation of key signaling proteins (tyrosine, Btk) and actin regulators (WASP) in CD23 KO B cells.
Conclusions:
- CD23 negatively regulates BCR signaling independently of IgE immune complexes.
- CD23 influences actin-mediated BCR clustering and B-cell morphology, thereby down-regulating BCR signaling.
Abstract:
CD23 has been implicated as a negative regulator of IgE and IgG antibody responses. However, whether CD23 has any role in B-cell activation remains unclear. We examined the expression of CD23 in different subsets of peripheral B cells and the impact of CD23 expression on the early events of B-cell receptor (BCR) activation using CD23 knockout (KO) mice. We found that in addition to marginal zone B cells, mature follicular B cells significantly down regulate the surface expression level of CD23 after undergoing isotype switch and memory B-cell differentiation. Upon stimulation with membrane-associated antigen, CD23 KO causes significant increases in the area of B cells contacting the antigen-presenting membrane and the magnitude of BCR clustering. This enhanced cell spreading and BCR clustering is concurrent with increases in the levels of phosphorylation of tyrosine and Btk, as well as the levels of F-actin and phosphorylated Wiskott Aldrich syndrome protein, an actin nucleation promoting factor, in the contract zone of CD23 KO B cells. These results reveal a role of CD23 in the negative regulation of BCR signaling in the absence of IgE immune complex and suggest that CD23 down-regulates BCR signaling by influencing actin-mediated BCR clustering and B-cell morphological changes.
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