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Updated: Aug 9, 2026

Isolation and Activation of Murine Lymphocytes
Published on: October 30, 2016
Occupancy of CD72 (the CD5 counterstructure) enhances interleukin-4-dependent CD23 expression in resting B
Insights
Engagement of CD72 with antibody BU40 enhances interleukin-4 (IL-4) induced CD23 production in human B cells. This interaction potentiates IL-4
Area of Science:
- Immunology
- Cell Biology
Background:
- CD72 is a B cell surface molecule implicated in immune regulation.
- Interleukin-4 (IL-4) is a key cytokine for B cell activation and differentiation.
- CD23 is an important B cell surface receptor involved in antibody production.
Purpose of the Study:
- To investigate the role of CD72 engagement in modulating IL-4-induced CD23 expression on human B cells.
- To determine if CD72 activation synergizes with IL-4 to enhance CD23 production.
Main Methods:
- Utilized monoclonal antibody BU40 to engage CD72 on human B cells.
- Assessed CD23 expression and release in response to IL-4 and CD72 engagement.
- Employed monovalent Fab fragments to investigate the necessity of receptor cross-linking.
Main Results:
- Engagement of CD72 by antibody BU40 potentiated IL-4-induced CD23 production by two- to fivefold.
- CD72 engagement reduced the concentration of IL-4 required for maximal CD23 induction.
- Enhanced CD23 expression and release into culture medium were observed.
- CD72 engagement did not affect IL-4-induced surface IgM hyperexpression or phorbol ester-induced CD23 expression.
Conclusions:
- CD72 acts as a co-stimulatory molecule that enhances IL-4-mediated CD23 induction in human B cells.
- This synergistic interaction between CD72 and IL-4 has implications for understanding T-B cell collaboration.
- Simple CD72 engagement, without cross-linking, is sufficient to modulate IL-4 signaling pathways.
Abstract:
CD72, the human homologue of murine Lyb-2, was recently identified as a counterstructure to CD5. An antibody to CD72 (BU40) has been found to mimic interleukin-4 (IL-4) both in its ability to activate resting B cells into the early G1 phase of cell cycle and to augment the expression of major histocompatibility complex (MHC) class II antigen; unlike IL-4, the CD72-clustered antibody fails to induce the expression of CD23. We now report that engagement of CD72 by the IgG monoclonal antibody BU40 potentiates the capacity of IL-4--when used at optimal concentrations--to promote CD23 production in human B cells. The degree of enhancement arising from occupancy of CD72 ranged from two- to fivefold. Importantly, antibody to CD72 was also found to diminish the concentration required for IL-4 to promote CD23 expression to a level equivalent to that maximally achieved when using IL-4 alone. Engagement of CD72 by BU40 not only increased the amount of cell-associated CD23 induced by IL-4 but also led to augmented release of soluble material into the culture medium. Monovalent Fab fragments of BU40 antibody were as efficient as intact antibodies at synergizing with IL-4 for enhanced expression and release of CD23: thus simple tethering without the need for receptor cross-linking was sufficient to invoke change through CD72. Enhancement of CD23 expression via CD72 appeared to be selective for IL-4-dependent induction: the turn on of CD23 by tumour-promoting phorbol ester was left unaltered on the addition of BU40 antibody. Engagement of CD72 had no effect on the IL-4-promoted hyperexpression of surface IgM. The findings are discussed within the context of the molecular and functional interactions occurring during T-B collaboration.
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