Altered TCR Signaling from Geometrically Repatterned Immunological Synapses
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- 18 November 2005
- journal article
- other
- Published by American Association for the Advancement of Science (AAAS) in Science
- Vol. 310 (5751) , 1191-1193
- https://doi.org/10.1126/science.1119238
Abstract
The immunological synapse is a specialized cell-cell junction that is defined by large-scale spatial patterns of receptors and signaling molecules yet remains largely enigmatic in terms of formation and function. We used supported bilayer membranes and nanometer-scale structures fabricated onto the underlying substrate to impose geometric constraints on immunological synapse formation. Analysis of the resulting alternatively patterned synapses revealed a causal relation between the radial position of T cell receptors (TCRs) and signaling activity, with prolonged signaling from TCR microclusters that had been mechanically trapped in the peripheral regions of the synapse. These results are consistent with a model of the synapse in which spatial translocation of TCRs represents a direct mechanism of signal regulation.Keywords
This publication has 21 references indexed in Scilit:
- Actin and agonist MHC–peptide complex–dependent T cell receptor microclusters as scaffolds for signalingThe Journal of Experimental Medicine, 2005
- Scanning Probe Lithography on Fluid Lipid MembranesJournal of the American Chemical Society, 2004
- The role of the inhibitors of interleukin-6 signal transduction SHP2 and SOCS3 for desensitization of interleukin-6 signallingBiochemical Journal, 2004
- Location is Everything: Lipid Rafts and Immune Cell SignalingAnnual Review of Immunology, 2003
- Membrane–cytoskeleton interactions during the formation of the immunological synapse and subsequent T‐cell activationImmunological Reviews, 2002
- Direct observation of ligand recognition by T cellsNature, 2002
- T Cell Receptor Signaling Precedes Immunological Synapse FormationScience, 2002
- The Immunological Synapse: A Molecular Machine Controlling T Cell ActivationScience, 1999
- Supported Membranes: Scientific and Practical ApplicationsScience, 1996
- Binding of immunogenic peptides to Ia histocompatibility moleculesNature, 1985