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Updated: Aug 8, 2026

Generation of Human CD40-activated B cells
Published on: October 17, 2009
Ligation of CD23 triggers cyclic AMP generation in human B lymphocytes
J P Kolb1, A Abadie, N Paul-Eugene
1Unité INSERM 196, Institut Curie, Paris, France.
Insights
Ligation of the low affinity IgE receptor CD23 on B lymphocytes increases cyclic AMP (cAMP) levels, independent of Gs proteins. This CD23 signaling pathway interacts with the IL-4 receptor pathway, potentially inhibiting B cell activation.
Area of Science:
- Immunology
- Cell Signaling
- B Lymphocyte Biology
Background:
- The low affinity IgE receptor CD23 is implicated in B lymphocyte functions including activation, antigen presentation, and IgE production.
- Previous studies showed CD23 ligation triggers phosphoinositide hydrolysis and calcium mobilization via a Pertussis toxin-insensitive G protein.
- Interleukin-4 (IL-4) is a key cytokine regulating B cell activation and differentiation.
Purpose of the Study:
- To investigate the effect of anti-CD23 monoclonal antibody (mAb) on cyclic AMP (cAMP) levels in human B lymphocytes.
- To elucidate the signaling pathways involved in CD23-mediated cAMP accumulation.
- To explore the cross-talk between CD23 and IL-4 receptor signaling.
Main Methods:
- Measurement of cAMP concentration in human peripheral blood B lymphocytes after stimulation with anti-CD23 mAb or IgE-sensitized complexes.
- Assessment of CD23 signaling using F(ab')2 fragments, TMB-8, BAPTA, GTP-gamma S, and indomethacin.
- Investigation of desensitization effects by pre-treating B cells with anti-CD23 mAb or IL-4.
Main Results:
- Anti-CD23 mAb induced a significant increase in cAMP concentration in both resting and IL-4-stimulated B cells.
- The cAMP increase was dependent on phosphoinositidase C activity and intracellular calcium, but not directly on Gs proteins or prostaglandin production.
- Pre-treatment with anti-CD23 mAb or IL-4 resulted in homologous and heterologous desensitization, indicating cross-talk between signaling pathways.
Conclusions:
- CD23 ligation activates a signaling cascade leading to cAMP accumulation in B lymphocytes, partially dependent on phosphoinositidase C and calcium.
- The observed negative cross-talk between CD23 and IL-4 receptor signaling pathways at the cAMP level may contribute to the inhibitory effects of anti-CD23 mAb on B cell activation.
- These findings reveal a novel role for CD23 in regulating B cell signaling and function.
Abstract:
The low affinity IgE receptor CD23 may play a role in several B lymphocyte functions, such as cell activation and multiplication, Ag presentation, and IgE production. We have previously reported that ligation of the CD23 molecule with anti-CD23 mAb, or IgE-anti-IgE complexes, leads to phosphoinositide hydrolysis and calcium mobilization through the generation of Inositol (1,4,5) trisphosphate via a process involving a Pertussis toxin insensitive GTP-binding protein. In our work, we show that anti-CD23 mAb elicit an increase in cAMP concentration in human peripheral blood-derived B lymphocytes. This effect was detected both in resting and in IL-4-stimulated B cells displaying, respectively, low and high levels of CD23. Maximum cAMP accumulation was reached about 20 min after addition of the mAb. Involvement of Fc gamma RII in this process could be excluded because cAMP increase was also triggered by mAb anti-CD23 F(ab')2 fragments. Accumulation of cAMP was also observed when IgE-sensitized activated B lymphocytes were challenged with the specific hapten. Several lines of evidence indicate that the cAMP increase after CD23 ligation may result, in part, from the stimulation of phosphoinositidase C, inasmuch as it was markedly impaired by treatment with TMB-8, an inhibitor of InsP3-induced calcium release from intracytoplasmic stores and with BAPTA, an intracellular calcium chelator. Addition of GTP-gamma S to permeabilized B cells or to membrane preparations did not potentiate the effect of the mAb, suggesting that a Gs protein is not directly implicated in the generation of cAMP. Besides, cAMP accumulation is not due to the production of PG because it is not modified by indomethacin, an inhibitor of the cyclooxygenase pathway. Pretreatment of B lymphocytes with either anti-CD23 mAb or IL-4 led to autologous as well as heterologous desensitization. This negative cross-talk, at the level of cAMP, between the signaling pathways triggered by ligation of CD23 and of the IL-4 receptor, could contribute to the inhibitory effect of anti-CD23 mAb on IL-4-dependent B cell activation and differentiation.
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