A unique CD72 epitope suggests a potential interaction with Fc gamma RII/CD32 on B lineage lymphocytes
Yoshio Yamashita1, Hyewon Phee, Kim-Sue R S Tudor
1Immunobiology & Cancer Program, Oklahoma Medical Research Foundation, Oklahoma City, Oklahoma 73104, USA.
Insights
The CD72 glycoprotein interacts with Fcgamma receptor II (CD32) on B lymphocytes. This interaction may cooperatively deliver negative signals, modulating immune responses.
Area of Science:
- Immunology
- Molecular Biology
- Cell Biology
Background:
- The transmembrane CD72 glycoprotein signals to B lymphocytes, with context-dependent outcomes.
- CD72 functions as a counter-receptor/ligand for the CD100 semaphorin protein.
Purpose of the Study:
- To investigate the physical interaction between CD72 and Fcgamma receptor II (CD32) on lymphocyte membranes.
- To determine the expression timing of CD72 during lymphocyte maturation.
Main Methods:
- Utilized a novel monoclonal antibody for murine CD72.
- Employed immunoblotting, transfection, and confocal microscopy.
- Assessed Fc receptor-blocking antibody inhibition and co-distribution studies.
Main Results:
- Demonstrated physical association between CD72 and CD32 on viable B cells.
- Confirmed CD72/CD32 co-distribution using confocal microscopy.
- Identified CD72 acquisition by large pre-B cells during IL-7 independent maturation.
Conclusions:
- CD72 physically interacts with Fcgamma receptor II (CD32) on B lymphocytes.
- This interaction may cooperatively deliver negative signals to modulate humoral immune responses.
- CD72 expression begins during early B cell maturation in the bone marrow.
Abstract:
It has long been known that ligation of the transmembrane CD72 glycoprotein delivers signals to B lymphocytes, with the outcome depending on context. Of particular interest is its ability to function as a counter-receptor/ ligand for the CD100 semaphorin protein. We have now obtained evidence that CD72 physically interacts on the lymphocyte membrane with Fcgamma receptor II (CD32). The association was first revealed with a new monoclonal antibody that recognizes polymorphic determinants on murine CD72. Although the specificity for CD72 was clear from immunoblotting, transfection and other experiments, staining with this reagent was inhibited when cells were pretreated with an Fc receptor-blocking antibody (CD16/CD32 specific). Furthermore, confocal microscopy revealed that the two molecules co-distributed on viable B cells. We also used the antibody to determine when CD72 becomes available to maturing lymphocytes. The marker is first acquired as large pre-B cells and enter the IL-7 independent phase of maturation within bone marrow. Subsequent interactions between CD72 and CD32 may cooperatively deliver negative signals that modulate humoral immune responses.
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