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Updated: Jun 27, 2026

Examination of Thymic Positive and Negative Selection by Flow Cytometry
Published on: October 8, 2012
CD72, a coreceptor with both positive and negative effects on B lymphocyte development and function
Hsin-Jung Wu1, Subbarao Bondada
1Section on Immunology and Immunogenetics, Joslin Diabetes Center, Harvard Medical School, Boston, MA 02115, USA.
Insights
CD72, a B cell coreceptor, enhances B cell receptor signaling by interacting with both positive and negative regulators, impacting B cell growth and differentiation. Its deficiency is linked to autoimmunity.
Area of Science:
- Immunology
- Cell Signaling
Background:
- B lymphocytes are activated by B cell receptor (BCR) signaling.
- B cell coreceptors modulate BCR signaling thresholds for growth and differentiation.
- CD72 is a B cell coreceptor that enhances BCR signaling through interaction with CD100.
Purpose of the Study:
- To investigate the dual signaling role of CD72 in B cell activation.
- To elucidate the molecular mechanisms underlying CD72-mediated B cell signaling.
- To explore the implications of CD72 function in autoimmunity.
Main Methods:
- Analysis of signaling events downstream of CD72 ligation.
- Investigation of CD72 interactions with signaling molecules (e.g., SHP-1, Grb2, CD19).
- Assessment of B cell responses in CD72-deficient and CD100-null models.
Main Results:
- CD72 ligation activates Src kinases (Blk, Lyn) and Btk, leading to MAP kinase activation.
- CD72 signaling can restore responsiveness in Btk-deficient B cells.
- BCR signaling is enhanced in CD72-deficient cells but reduced in CD100-null cells.
Conclusions:
- CD72 exhibits dual signaling properties, interacting with both positive (e.g., CD19) and negative (e.g., SHP-1) regulators.
- A dual signaling hypothesis explains CD72's role in promoting B cell growth and differentiation.
- CD72 and CD100 deficiencies lead to autoimmunity; CD72 polymorphisms are associated with autoimmune diseases.
Introduction:
B lymphocytes remain in a resting state until activated by antigenic stimuli through interaction with the B cell receptor (BCR). Coreceptors on B cells can modulate the thresholds for signaling through the BCR for growth and differentiation. CD72 is a B cell coreceptor that has been shown to interact with CD100, a semaphorin, and to enhance BCR signaling.
Discussion:
CD72 ligation induces a variety of early signaling events such as activation of the Src kinases Blk and Lyn and the non-src kinase Btk leading to activation of the mitogen-activated protein (MAP) kinases, events usually associated with positive signaling. CD72 signals can enable Btk-deficient B cells to overcome their unresponsiveness to BCR signaling. On the other hand, BCR-mediated signals are enhanced in CD72-deficient cells but are reduced in CD100 null cells. The dual effects of CD72 on B cells can be explained by its association with positive and negative signaling molecules. Thus, CD72 interacts with SHP-1, an SH2-domain containing protein tyrosine phosphatase, a negative regulator of signaling, and Grb2, an adaptor protein associated with the Ras/MAPK pathway. Ligation of CD72 also triggered its association with CD19, a positive modulator of B cell receptor signaling. We propose a dual signaling hypothesis to explain the growth and differentiation promoting properties of CD72. Deficiency in either CD72 or CD100 leads to autoimmunity in mouse models. CD72 expression and polymorphisms exhibit some association with autoimmune diseases such as lupus, Sjogren's syndrome, and type 1 diabetes.
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