AI Article Synopsis

  • Immunological synapses are structured junctions between T cells and antigen-presenting cells (APCs), featuring a peripheral and central cluster that aid cytotoxic T lymphocytes (CTLs) in targeting and killing cells.
  • The study investigated how human CTLs and helper T cells interact with planar bilayers that mimic cellular environments, finding that CTLs can create specific junctions in response to high levels of ICAM-1, essential for effective immune responses.
  • Activated CD8(+) T cells demonstrated a significantly higher formation of these junctions compared to CD4(+) T cells, suggesting that abnormalities in this process may influence CTL efficacy and immune response in tissues.

Article Abstract

Immunological synapses are organized cell-cell junctions between T lymphocytes and APCs composed of an adhesion ring, the peripheral supramolecular activation cluster (pSMAC), and a central T cell receptor cluster, the central supramolecular activation cluster (cSMAC). In CD8(+) cytotoxic T lymphocytes, the immunological synapse is thought to facilitate specific killing by confining cytotoxic agents to the synaptic cleft. We have investigated the interaction of human CTLs and helper T cells with supported planar bilayers containing ICAM-1. This artificial substrate provides identical ligands to CD4(+) and CD8(+) T cells, allowing a quantitative comparison. We found that cytotoxic T lymphocytes form a ring junction similar to a pSMAC in response to high surface densities of ICAM-1 in the planar bilayer. MICA, a ligand for NKG2D, facilitated the ring junction formation at lower surface densities of ICAM-1. ICAM-1 and MICA are upregulated in tissues by inflammation- and stress-associated signaling, respectively. Activated CD8(+) T cells formed fivefold more ring junctions than did activated CD4(+) T cells. The ring junction contained lymphocyte function associated antigen-1 and talin, but did not trigger polarization and granule translocation to the interface. This result has specific implications for the mechanism of effective CTL hunting for antigen in tissues. Abnormalities in this process may alter CTL reactivity.

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Source
http://www.ncbi.nlm.nih.gov/pmc/articles/PMC300769PMC
http://dx.doi.org/10.1172/JCI19337DOI Listing

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