Inhibition of tyrosine phosphorylation prevents T-cell receptor-mediated signal transduction

C H June1, M C Fletcher, J A Ledbetter

  • 1Immune Cell Biology Program, Naval Medical Research Institute, Bethesda, MD 20814.

Insights

T-cell receptor (TCR) activation involves protein tyrosine kinase (PTK) pathways initiating signaling before phospholipase C (PLC) activation. Herbimycin A inhibits TCR-mediated signaling, confirming PTK

Area of Science:

  • Immunology
  • Cell Signaling
  • Molecular Biology

Background:

  • T-cell receptor (TCR) engagement triggers complex signal transduction pathways.
  • The interplay between phospholipase C (PLC) and protein tyrosine kinase (PTK) pathways in TCR signaling is not fully understood.
  • Previous findings suggest PTK activity may precede PLC activation in T cells.

Purpose of the Study:

  • To investigate whether PTK pathways initiate or regulate TCR-mediated PLC activation.
  • To determine the role of PTK in TCR-induced inositol phospholipid hydrolysis and calcium mobilization.
  • To assess the impact of inhibiting PTK on downstream TCR signaling events.

Main Methods:

  • T cells were treated with herbimycin A, a PTK inhibitor.
  • Assessed effects on substrate tyrosine phosphorylation, inositol phospholipid hydrolysis, and intracellular calcium elevation.
  • Evaluated G-protein-mediated PLC activity using aluminum fluoride.
  • Measured interleukin 2 production and interleukin 2 receptor expression.

Main Results:

  • Herbimycin A inhibited TCR-mediated substrate tyrosine phosphorylation, inositol phospholipid hydrolysis, and calcium elevation.
  • G-protein-mediated PLC activity remained unaffected by herbimycin A.
  • Herbimycin A blocked TCR-mediated interleukin 2 production and receptor expression but not phorbol ester-induced effects.

Conclusions:

  • TCR-mediated signaling is initiated by a PTK pathway.
  • PTK activation precedes and is critical for PLC activation and subsequent downstream signaling.
  • Herbimycin A effectively abrogates TCR-specific signaling without affecting distal pathways.

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