Immunological synapse arrays: Patterned protein surfaces that modulate immunological synapse structure formation in T cells
Open Access
- 11 April 2006
- journal article
- Published by Proceedings of the National Academy of Sciences in Proceedings of the National Academy of Sciences
- Vol. 103 (15), 5700-5705
- https://doi.org/10.1073/pnas.0509404103
Abstract
T cells are activated by recognition of foreign peptides displayed on the surface of antigen presenting cells (APCs), an event that triggers assembly of a complex microscale structure at the T cell-APC interface known as the immunological synapse (IS). It remains unresolved whether the unique physical structure of the synapse itself impacts the functional response of T cells, independent of the quantity and quality of ligands encountered by the T cell. As a first step toward addressing this question, we created multicomponent protein surfaces presenting lithographically defined patterns of tethered T cell receptor (TCR) ligands (anti-CD3 "activation sites") surrounded by a field of tethered intercellular adhesion molecule-1 (ICAM-1), as a model substrate on which T cells could be seeded to mimic T cell-APC interactions. CD4(+) T cells seeded on these surfaces polarized and migrated; on contact with activation sites, T cells assembled an IS with a structure modulated by the physical pattern of ligand encountered. On surfaces patterned with focal spots of TCR ligand, T cells stably interacted with activation sites, proliferated, and secreted cytokines. In contrast, T cells interacting with activation sites patterned to preclude centralized clustering of TCR ligand failed to form stable contacts with activation sites, exhibited aberrant PKC- clustering in a fraction of cells, and had significantly reduced production of IFN-gamma. These results suggest that focal clustering of TCR ligand characteristic of the "mature" IS may be required under some conditions for full T cell activation.Keywords
This publication has 42 references indexed in Scilit:
- T cell killing does not require the formation of a stable mature immunological synapseNature Immunology, 2004
- T-cell priming by dendritic cells in lymph nodes occurs in three distinct phasesNature, 2004
- Neural and Immunological Synaptic RelationsScience, 2002
- Two-Photon Imaging of Lymphocyte Motility and Antigen Response in Intact Lymph NodeScience, 2002
- T Cell Receptor Signaling Precedes Immunological Synapse FormationScience, 2002
- Soft Lithography in Biology and BiochemistryAnnual Review of Biomedical Engineering, 2001
- The Immunological Synapse: A Molecular Machine Controlling T Cell ActivationScience, 1999
- Spatially-Addressable Immobilization of Macromolecules on Solid SupportsJournal of the American Chemical Society, 1995
- Antigen recognition by helper T cells elicits a sequence of distinct changes of their shape and intracellular calciumCurrent Biology, 1994
- The presence of interleukin 4 during in vitro priming determines the lymphokine-producing potential of CD4+ T cells from T cell receptor transgenic mice.The Journal of Experimental Medicine, 1992