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Tumor necrosis factor stimulates ornithine decarboxylase activity in human fibroblasts and tumor target cells
N J Donato1, J Rotbein, M G Rosenblum
1Department of Clinical Immunology and Biological Therapy, M.D. Anderson Cancer Center, Houston, Texas 77030.
Abstract:
The activity of the polyamine biosynthetic enzyme, ornithine decarboxylase (ODC), has been shown to be rapidly modulated by a variety of growth regulatory molecules. In this report the effect of the growth modulatory peptide, tumor necrosis factor, on ODC activity was examined on two cell lines which express equivalent TNF binding properties, but differ in their growth response when exposed to this factor. TNF treatment of WI-38 fibroblasts stimulated both their growth and induced ODC activity 5-10-fold when measured 6-24 h after TNF incubation. TNF induced cytotoxicity in ME-180 cervical carcinoma cells and, interestingly, stimulated both ODC activity (3-6-fold) and putrescine accumulation when measured prior to the onset of cytotoxicity. Induction of ODC was TNF concentration-dependent and paralleled the concentration-dependency for cytotoxicity. Based upon studies with cycloheximide, de novo protein biosynthesis was required for TNF-mediated ODC induction in ME-180 cells. The effects of other growth inhibitory peptides and growth factors were analyzed for their combined effect on ODC activity in TNF-treated or untreated ME-180 cells. Interferon gamma treatment had no significant effect on basal ODC activity but inhibited TNF-mediated ODC induction by approximately 50%. EGF treatment resulted in a potent stimulation of ODC activity which was not affected by TNF pre-treatment or coadministration on ME-180 cells. These results suggest that TNF has properties which are similar to those of a growth factor and distinct from those of other growth inhibitory peptides. The early growth factor-like actions of TNF occur on both normal fibroblasts and some tumor cells and evidence suggests that these effects are antagonistic to the antiproliferative effects of TNF.
Insights
Tumor necrosis factor (TNF) stimulates ornithine decarboxylase (ODC) activity and cell growth in fibroblasts. In cervical cancer cells, TNF initially boosts ODC activity before causing cytotoxicity, indicating early growth factor-like actions.
Area of Science:
- Biochemistry
- Cell Biology
- Molecular Biology
Background:
- Ornithine decarboxylase (ODC) activity is modulated by growth regulatory molecules.
- Tumor necrosis factor (TNF) is a growth-modulatory peptide with varied cellular effects.
Purpose of the Study:
- To investigate the effect of TNF on ODC activity in two cell lines with differing growth responses to TNF.
- To elucidate the mechanisms of TNF-induced ODC modulation and its interaction with other growth factors.
Main Methods:
- Treatment of WI-38 fibroblasts and ME-180 cervical carcinoma cells with TNF.
- Measurement of ODC activity, putrescine accumulation, and cytotoxicity.
- Studies using cycloheximide to assess the requirement for de novo protein synthesis.
- Analysis of combined effects with Interferon gamma and EGF.
Main Results:
- TNF stimulated ODC activity (5-10 fold) and growth in WI-38 fibroblasts.
- In ME-180 cells, TNF induced ODC activity (3-6 fold) and putrescine accumulation prior to cytotoxicity.
- TNF-mediated ODC induction in ME-180 cells required de novo protein synthesis.
- Interferon gamma partially inhibited TNF-induced ODC, while EGF strongly stimulated ODC independently of TNF.
Conclusions:
- TNF exhibits early growth factor-like properties in both normal fibroblasts and some tumor cells.
- These growth-promoting effects of TNF appear antagonistic to its antiproliferative actions.
- ODC induction is a key early event in TNF's complex cellular response.