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Association of the transmembrane 4 superfamily molecule CD53 with a tyrosine phosphatase activity
1MRC Cellular Immunology Unit, Sir William Dunn School of Pathology, University of Oxford, GB.
Abstract:
Cell surface proteins of the transmembrane 4 superfamily (TM4SF) are a newly characterized family of proteins which are presumed to span the plasma membrane four times. The function of this family of molecules is poorly understood, but based on monoclonal antibody studies there is some evidence that they may be involved in transmembrane signal transduction and regulation of cell proliferation, differentiation, or both, in a number of different cell types. CD53 is a member of this family that is expressed on leukocytes, and transduces activation signals through unknown mechanisms that may involve phosphorylation events. However, CD53 has never been shown to associate directly with kinases. Here, we show by immunoprecipitation from cell lysates of lymph nodes and a thymoma cell line, that immune complexes of rat CD53 contain tyrosine phosphatase activity. The CD53-associated phosphatase was able to dephosphorylate in vitro the phosphorylated tyrosine kinase Lck, as well as a synthetic substrate, and its activity was abrogated by a tyrosine phosphatase inhibitor. Although its identity has not been established, it is clear from depletion experiments that it is not CD45. CD63, a second member of the TM4SF, also co-precipitates a phosphatase activity from rat basophilic leukemia cells. These results demonstrate that the TM4SF members associate with tyrosine phosphatases. It seems possible that such associated phosphatases may contribute to the signal transduction capacity of TM4SF molecules.
Insights
Transmembrane 4 superfamily (TM4SF) proteins like CD53 associate with tyrosine phosphatases. This finding suggests a role for these phosphatases in TM4SF-mediated signal transduction pathways in cells.
Area of Science:
- Cell biology
- Molecular biology
- Immunology
Background:
- Transmembrane 4 superfamily (TM4SF) proteins are cell surface proteins with poorly understood functions.
- Some evidence suggests TM4SF involvement in transmembrane signal transduction and cell regulation.
- CD53, a TM4SF member on leukocytes, transduces activation signals potentially via phosphorylation, but kinase association is unproven.
Purpose of the Study:
- To investigate the enzymatic activity associated with CD53.
- To determine if other TM4SF members also associate with enzymatic activities.
- To elucidate the potential role of TM4SF-associated enzymes in signal transduction.
Main Methods:
- Immunoprecipitation of rat CD53 from lymph node and thymoma cell lysates.
- In vitro dephosphorylation assays using phosphorylated Lck and a synthetic substrate.
- Testing the effect of a tyrosine phosphatase inhibitor.
- Depletion experiments to exclude CD45.
- Co-precipitation of phosphatase activity with CD63 from rat basophilic leukemia cells.
Main Results:
- Immune complexes of rat CD53 exhibited tyrosine phosphatase activity.
- The CD53-associated phosphatase dephosphorylated Lck and a synthetic substrate in vitro.
- Inhibitor studies confirmed the phosphatase activity.
- The associated phosphatase was not CD45.
- CD63 also co-precipitated phosphatase activity.
Conclusions:
- Members of the TM4SF, including CD53 and CD63, associate with tyrosine phosphatases.
- These associated phosphatases may contribute to the signal transduction capabilities of TM4SF molecules.