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A TIRF Microscopy Technique for Real-time, Simultaneous Imaging of the TCR and its Associated Signaling Proteins
Published on: March 22, 2012
TCR-dependent cell response is modulated by the timing of CD43 engagement
Nora A Fierro1, Gustavo Pedraza-Alva, Yvonne Rosenstein
1Instituto de Biotecnología and Posgrado en Ciencias Bioquímicas, Universidad Nacional Autónoma de México, Cuernavaca, Morelos.
Insights
Engaging CD43 before or with the T cell receptor (TCR) enhances T cell responses like IL-2 production. This timing influences immune function, supporting a temporal summation model for T cell activation.
Area of Science:
- Immunology
- Cellular Biology
- Molecular Signaling
Background:
- T cell activation requires T cell receptor (TCR) and costimulatory receptor engagement.
- The precise timing of molecular interactions during T cell activation is not fully understood.
- CD43, an abundant T cell surface molecule, is hypothesized to be an early interacting molecule.
Purpose of the Study:
- To investigate the role of CD43 engagement timing in T cell activation.
- To determine if CD43 interaction modulates T cell receptor (TCR) signaling.
- To elucidate the impact of CD43 timing on T cell proliferation and cytokine production.
Main Methods:
- Investigated T cell responses under different engagement orders of CD43 and TCR.
- Assessed Lck-Src homology 2 domain containing phosphatase-1 interaction.
- Measured levels of IL-2, cell proliferation, and secretion of proinflammatory cytokines and chemokines.
Main Results:
- Engaging CD43 before or simultaneously with TCR inhibited negative feedback, promoting IL-2 production, proliferation, and cytokine secretion.
- TCR engagement before CD43 resulted in insufficient IL-2 production and proliferation.
- TCR and CD28 co-stimulation led to vigorous proliferation regardless of engagement order.
Conclusions:
- CD43 engagement timing significantly impacts T cell signaling outcomes.
- CD43 prolongs TCR signaling duration, supporting the temporal summation model of T cell activation.
- Temporality of molecular engagement is a critical factor in fine-tuning T cell responses and immune function.
Abstract:
Binding of Ag by the Ag receptor in combination with other stimuli provided by costimulatory receptors triggers the expansion and differentiation of T lymphocytes. However, it is unclear whether the time when costimulatory molecules interact with their counterreceptors with regards to Ag recognition leads to different T cell responses. Provided that the coreceptor molecule CD43 is a very abundant molecule evenly distributed on the membrane of T cell surface protruding 45 nm from the cell, we hypothesized that CD43 is one of the first molecules that interacts with the APC and thus modulates TCR activation. We show that engaging CD43 before or simultaneously with the TCR inhibited Lck-Src homology 2 domain containing phosphatase-1 interaction, preventing the onset of a negative feedback loop on TCR signals, favoring high levels of IL-2, cell proliferation, and secretion of proinflammatory cytokines and chemokines. In contrast, the intracellular signals resulting of engaging the TCR before CD43 were insufficient to induce IL-2 production and cell proliferation. Interestingly, when stimulated through the TCR and CD28, cells proliferated vigorously, independent of the order with which molecules were engaged. These results indicate that CD43 induces a signaling cascade that prolongs the duration of TCR signaling and support the temporal summation model for T cell activation. In addition to the strength and duration of intracellular signals, our data underscore temporality with which certain molecules are engaged as yet another mechanism to fine tune T cell signal quality, and ultimately immune function.
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