Building the immunological synapse-toward a quantitative view of T cell activation
Michael L. Dustin, Shannon K. Bromley, Arash Grakoui, Paul M. Allen, Cenk Sumen, Mark M. Davis, Andréy S. Shaw
Abstract
Michael L. Dustin, Shannon K. Bromley, Arash Grakoui, Paul M. Allen, Cenk Sumen, Mark M. Davis, Andréy S. Shaw
Abstract
T cell activation requires formation of a specialized cell-cell junction, the immunological synapse (Paul and Seder, 1994). The authors have hypothesized that segregation will be an important process for T cell activation (Shaw and Dustin, 1997). To test these hypotheses and to explore the engineering principles behind these events the authors have developed a model system in which formation of an immunological synapse is quantitatively visualized in real time. Molecular segregation of engaged MHC-peptide and ICAM-1 complexes was strongly correlated with T cell proliferation. These data support the hypothesis that molecular segregation is important for T cell signaling.
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T cell activation requires formation of a specialized cell-cell junction, the immunological synapse (Paul and Seder, 1994). The authors have hypothesized that segregation will be an important process for T cell activation (Shaw and Dustin, 1997). To test these hypotheses and to explore the engineering principles behind these events the authors have developed a model system in which formation of an immunological synapse is quantitatively visualized in real time. Molecular segregation of engaged MHC-peptide and ICAM-1 complexes was strongly correlated with T cell proliferation. These data support the hypothesis that molecular segregation is important for T cell signaling.
Key concepts: Immunological synapse, T cell, Synapse, Cell, Cell biology, T-cell receptor, Cell growth, Neuroscience