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Updated: Aug 11, 2026

Isolation and Activation of Murine Lymphocytes
Published on: October 30, 2016
Normal development but differentially altered proliferative responses of lymphocytes in mice lacking CD81
T Miyazaki1, U Müller, K S Campbell
1Basel Institute for Immunology, Switzerland. miyazaki@bii.ch
Insights
CD81 protein is crucial for regulating lymphocyte proliferation, impacting both T and B cell responses. While not essential for development, its absence alters immune cell behavior and homeostasis.
Area of Science:
- Immunology
- Cell Biology
- Molecular Biology
Background:
- CD81, also known as TAPA-1, is a transmembrane protein in the TM4SF family.
- It is widely expressed on cell surfaces and involved in lymphocyte complexes, suggesting roles in immune cell regulation.
Purpose of the Study:
- To investigate the role of CD81 in lymphocyte development and activation.
- To understand CD81's impact on T and B cell proliferation and signaling.
Main Methods:
- Analysis of CD81 null mutant mice.
- Assessment of T and B cell development and number.
- Evaluation of lymphocyte proliferation responses to various stimuli.
- Measurement of tyrosine phosphorylation and intracellular calcium flux.
Main Results:
- CD81 null mice showed normal T and conventional B cell development but reduced B-1 cells.
- Both T and B cells exhibited enhanced proliferation, with impaired B cell proliferation upon BCR cross-linking.
- Antigen receptor signaling, including tyrosine phosphorylation and calcium flux, appeared normal.
Conclusions:
- CD81 is not essential for normal T and B cell development.
- CD81 plays a critical role in controlling lymphocyte homeostasis by modulating proliferation.
- The effect of CD81 on proliferation is context-dependent, varying with stimulation type.
Abstract:
CD81 (TAPA-1) is a member of the transmembrane 4 superfamily (TM4SF) which is expressed on the cell surface of most cells of the body throughout their cellular differentiation. It has been recognized in several cell surface complexes of lymphocytes, suggesting that it may have diverse roles in lymphocyte development and activation regulation. Mice with a CD81 null mutation revealed normal T- and conventional B-cell development, although CD19 expression on B cells was dull and B-1 cells were reduced in number. However, both T and B cells of mutant mice exhibited strikingly enhanced proliferation in response to various types of stimuli. Interestingly, while proliferative responses of T cells following T-cell antigen receptor (TCR) engagement was enhanced in the absence of CD81, B-cell proliferation in response to B-cell antigen-receptor (BCR) cross-linking was severely impaired. Despite these altered proliferative responses, both tyrosine phosphorylation and intracellular calcium flux in response to cross-linking of cell surface antigen receptors were normal in mutant mice, reflecting apparently normal initial signaling of antigen receptors. In conclusion, though CD81 is not essential for normal T- and conventional B-cell development, it plays key roles in controlling lymphocyte homeostasis by regulating lymphocyte proliferation in distinct manners, dependent on the context of stimulation.
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