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Transgene-encoded human CD2 acts in a dominant negative fashion to modify thymocyte selection signals in mice
1Division of Molecular Immunology, National Institute for Medical Research, London, GB.
Abstract:
CD2 is a cell surface glycoprotein present on all T cells which has been shown to function as an adhesion and signaling molecule. Expressed early in T cell development, human CD2 (HCD2) has been suggested to play a role during thymopoiesis. However, the relevance of CD2 in T cell development has been called into question recently, as neither disruption of the CD2 gene nor anti-CD2 antibody treatment of fetal thymic organ cultures in mouse were shown to have any discernible consequences. We have expressed HCD2 at high levels in transgenic mice and found a profound effect of the transgene on thymocyte differentiation. Transgenic thymuses are considerably reduced in cell number as a consequence of increased apoptosis of double-positive (DP) thymocytes in the cortex. The remaining DP cells have up-regulated levels of T cell receptor (TCR) and are resistant to apoptosis mediated by administration of antigen. These effects are dependent on the cytoplasmic domain of HCD2, as mice expressing comparable levels of a tailless HCD2 transgene have a normal phenotype. The HCD2 cytoplasmic domain contains several regions of identity with mouse CD2 and can interact effciently with mouse intracellular signaling machinery. These results suggest there is considerable cross-talk between CD2 and TCR on developing thymocytes with consequences for the stimulation threshold of mature T cells.
Insights
High expression of human CD2 (HCD2) in transgenic mice significantly impacts thymocyte differentiation, increasing apoptosis and altering T cell receptor (TCR) signaling. These findings reveal crucial cross-talk between CD2 and TCR during T cell development.
Area of Science:
- Immunology
- Molecular Biology
- Cell Biology
Background:
- CD2 is a T cell surface glycoprotein involved in adhesion and signaling.
- Its role in T cell development (thymopoiesis) has been debated due to conflicting experimental results.
Purpose of the Study:
- To investigate the role of human CD2 (HCD2) in T cell development using transgenic mice.
- To determine the impact of HCD2 expression on thymocyte differentiation and signaling.
Main Methods:
- Generation of transgenic mice expressing high levels of HCD2.
- Analysis of thymocyte populations, apoptosis, and T cell receptor (TCR) expression.
- Comparison with mice expressing a tailless HCD2 transgene.
Main Results:
- Transgenic thymuses showed reduced cell numbers due to increased apoptosis of double-positive (DP) thymocytes.
- DP cells exhibited up-regulated TCR levels and resistance to antigen-mediated apoptosis.
- Phenotypic changes were dependent on the cytoplasmic domain of HCD2, indicating its role in intracellular signaling.
Conclusions:
- HCD2 significantly influences thymocyte differentiation, affecting apoptosis and TCR signaling thresholds.
- There is substantial cross-talk between CD2 and TCR pathways during T cell development.
- The cytoplasmic domain of CD2 is critical for mediating these effects on T cell development and function.