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Updated: Aug 8, 2026

Static Adhesion Assay for the Study of Integrin Activation in T Lymphocytes
Published on: June 13, 2014
CD22, a B lymphocyte-specific adhesion molecule that regulates antigen receptor signaling
T F Tedder1, J Tuscano, S Sato
1Department of Immunology, Duke University Medical Center, Durham, North Carolina 27710, USA. tedde003@mc.duke.edu
Insights
CD22 is a crucial B cell surface molecule regulating B cell development and signaling. Studies in CD22-deficient mice show its importance in adjusting antigen receptor signaling thresholds.
Area of Science:
- Immunology
- Cell Biology
- Molecular Biology
Background:
- B lymphocyte development is tightly regulated by cell surface molecules and signaling pathways.
- The B cell antigen receptor (BCR) and other surface receptors mediate responses to foreign antigens.
- CD22, an immunoglobulin superfamily member, is a functionally significant receptor in B cell processes.
Purpose of the Study:
- To investigate the role of CD22 in B cell development and function.
- To understand CD22's involvement in regulating B cell signaling thresholds.
- To explore potential implications of CD22 in disease susceptibility and autoimmunity.
Main Methods:
- Analysis of CD22 expression during B cell maturation.
- Characterization of CD22 as an adhesion receptor for sialic acid-bearing ligands.
- In vitro studies of CD22 signal transduction involving kinases and phosphatases.
- Phenotypic analysis of CD22-deficient mice.
Main Results:
- CD22 is expressed from the cytoplasm of pro-B cells to the surface of IgD+ mature B cells.
- CD22 mediates intercellular interactions and modulates BCR signaling.
- CD22-deficient mice exhibit reduced surface immunoglobulin levels in specific B cell subpopulations, indicating a role in adjusting signaling thresholds.
Conclusions:
- CD22 plays a critical role in the generation of mature B cells in bone marrow, blood, and lymphoid tissues.
- CD22 functions in vivo to fine-tune the signaling threshold of cell surface antigen receptors.
- Further research into CD22 function may uncover its involvement in disease susceptibility and autoimmune conditions.
Abstract:
The development of B lymphocytes is a highly regulated process that depends in part on lineage-specific cell surface molecules. In addition, transmembrane signals generated through the B cell antigen receptor and other surface molecules regulate B cell responses to foreign antigens. Recent studies reveal CD22 to be a functionally significant receptor during these processes. CD22 is first expressed in the cytoplasm of pro-B and pre-B cells, and on the surface as B cells mature to become IgD+. CD22 is a member of the Ig superfamily that serves as an adhesion receptor for sialic acid-bearing ligands expressed on erythrocytes and all leukocyte classes. In addition to its potential role as a mediator of intercellular interactions, signal transduction through CD22 can activate B cells and modulate antigen receptor signaling in vitro. CD22 signaling is mediated via interactions with a number of kinases and phosphatases that bind the cytoplasmic domain through phosphorylated tyrosine residues located within consensus TAM and TIM motifs. The phenotype of CD22-deficient mice suggests that CD22 is primarily involved in the generation of mature B cells within the bone marrow, blood, and marginal zones of lymphoid tissues. Most notable in CD22-deficient mice is a significant diminution of surface Ig levels in these B cell subpopulations, which suggests that CD22 functions in vivo to adjust the signaling threshold of cell surface antigen receptors. A further understanding of CD22 function is required and may reveal roles for CD22 in disease susceptibility or the development of autoimmunity.
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