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Tumor necrosis factor modulates epidermal growth factor receptor phosphorylation and kinase activity in human tumor
N J Donato1, G E Gallick, P A Steck
1Department of Clinical Immunology, University of Texas, M. D. Anderson Cancer Center, Houston, Texas 77030.
Abstract:
Tumor necrosis factor (TNF) is a cytokine which induces cytotoxicity in some but not all tumor cells. Initial studies of five tumor cell lines demonstrated that TNF was able to rapidly (within 30 min) modulate tyrosine protein kinase activity of epidermal growth factor (EGF) receptors on tumor cell lines which were sensitive to the cytotoxic effects of TNF but not alter EGF receptor kinase activity in TNF-resistant tumor cells. Two tumor cell lines (ME-180 cervical carcinoma and T24 bladder carcinoma) which have been shown to express similar TNF-binding characteristics but differ in their sensitivity to the cytotoxic actions of TNF were chosen for further characterization. Treatment of TNF-sensitive ME-180 cells with 1 nM TNF resulted in a 3-fold stimulation of EGF receptor tyrosine protein kinase activity within 10 min which correlated with increased phosphorylation of EGF receptor protein itself. In addition, dose-response studies indicate that similar concentrations of TNF modulate both ME-180 cell growth and EGF receptor kinase activity. Treatment of TNF-resistant T24 cells showed that TNF had no significant effect on their growth, EGF receptor tyrosine protein kinase activity, or phosphorylation of EGF receptor protein although EGF receptor kinase activity was stimulated by EGF. Quantitation of receptors expressed on the surface of ME-180 and T24 cells demonstrated a 3-fold difference between the number of EGF-binding sites on T24 (100,000) versus ME-180 cells (300,000), suggesting the relative abundance of EGF receptor does not solely account for differential effects of TNF on EGF receptor activation in these two cell lines. Phosphoamino acid analysis of EGF receptor from 32P-equilibrated ME-180 cells demonstrated that TNF-induced phosphorylation of amino acids which was quantitatively similar to that of EGF but distinct from the effects of phorbol ester. However, unlike EGF, TNF was unable to stimulate EGF receptor kinase activity in ME-180 cell lysates. The kinetics of EGF receptor activation and the metabolic consequence of activation of EGF receptor activity by TNF appear to be distinct from those induced by EGF. These results suggest that TNF-induced modulation of EGF receptor occurs through a unique mechanism and may play a role in the cytotoxic actions of TNF.
Insights
Tumor necrosis factor (TNF) rapidly modulates epidermal growth factor (EGF) receptor kinase activity in sensitive tumor cells, but not resistant ones. This unique TNF-induced EGF receptor activation may contribute to its cytotoxic effects.
Area of Science:
- Oncology
- Cell Biology
- Molecular Signaling
Background:
- Tumor necrosis factor (TNF) is a cytokine with cytotoxic effects on certain tumor cells.
- Epidermal growth factor (EGF) receptors are key signaling molecules in cell growth and proliferation.
- Differential sensitivity of tumor cells to TNF suggests underlying molecular mechanisms.
Purpose of the Study:
- To investigate the effect of TNF on EGF receptor tyrosine protein kinase activity in TNF-sensitive versus TNF-resistant tumor cell lines.
- To elucidate the mechanism by which TNF modulates EGF receptor activity.
- To determine if TNF-induced EGF receptor modulation correlates with TNF's cytotoxic actions.
Main Methods:
- Cell culture of ME-180 (cervical carcinoma) and T24 (bladder carcinoma) cell lines.
- Treatment with TNF and EGF, followed by assessment of EGF receptor tyrosine kinase activity.
- Quantification of EGF receptors on cell surfaces.
- Phosphoamino acid analysis of EGF receptor.
Main Results:
- TNF rapidly stimulated EGF receptor tyrosine kinase activity and phosphorylation in TNF-sensitive ME-180 cells, but not in resistant T24 cells.
- TNF modulated ME-180 cell growth and EGF receptor kinase activity in a dose-dependent manner.
- Differences in EGF receptor abundance did not fully explain the differential effects of TNF.
Conclusions:
- TNF modulates EGF receptor activity through a unique mechanism distinct from EGF.
- TNF-induced EGF receptor modulation is specific to TNF-sensitive tumor cells.
- This modulation may play a role in the cytotoxic mechanisms of TNF.