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C-JUN/AP-1 as possible mediators of tumor necrosis factor-alpha-induced apoptotic response in mouse JB6 tumor cells
1Laboratory of Viral Carcinogenesis, National Cancer Institute, Frederick, MD 21702-1201, USA.
Abstract:
Sensitivity to cell killing by tumor necrosis factor (TNF)-alpha was seen in the JB6-derived transformed mouse RT101 cell variants previously described as resistant to 12-O-tetradecanoylphorbol-13-acetate (TPA)-induced killing, while the TPA-sensitive variants were resistant to killing by TNF-alpha. Morphological and biochemical changes characteristic of apoptosis were found to precede TNF-alpha-induced cell death in TNF-alpha-sensitive (TNFs) but not TNF-alpha-resistant (TNFr) cells. In TNFr cells, TNF-alpha increased the cell cycle rate. The onset of cellular damage in TNFs cells, as indicated by propidium iodide uptake, was seen as early as 6 h after TNF-alpha treatment. 4,6-diamidino-2-phenylindole staining revealed chromosomal condensation approximately 4-6 h after TNF-alpha treatment. The DNA oligonucleosomal ladder of 180 bp and its multiples, a characteristic feature of apoptosis, was seen at 48 h. Little or no significant differences were found in the basal or induced levels of mRNA expression of several potential apoptosis mediator genes or apoptosis inhibitor genes. A dephosphorylated species of anti-c-Jun immunoprecipitated protein appeared in TNFs cells at 3 h posttreatment, accompanied by a parallel increase in AP-1 activity. Higher constitutive levels of the antioxidant enzymes superoxide dismutase and catalase were found in TNFr cells, but TNF-alpha did not significantly affect the activities of these enzymes or differentially induce their expression. The findings suggest that the preferential and transient increase in c-Jun dephosphorylation and AP-1 transcriptional activity may contribute to the preferential apoptotic response in TNFs cells; and that the greater constitutive oxidant defense in TNFr cells may contribute to their resistance.
Insights
Tumor necrosis factor-alpha (TNF-alpha) induces apoptosis in sensitive cells but increases cell cycle rate in resistant cells. Differences in c-Jun dephosphorylation and antioxidant enzyme levels explain this differential response.
Area of Science:
- Cell Biology
- Molecular Biology
- Cancer Research
Background:
- Tumor necrosis factor-alpha (TNF-alpha) is a key cytokine involved in inflammation and apoptosis.
- Differential sensitivity of cells to TNF-alpha-induced apoptosis is a critical factor in cancer therapy.
- Previous studies identified JB6-derived mouse cell variants with differential sensitivity to 12-O-tetradecanoylphorbol-13-acetate (TPA).
Purpose of the Study:
- To investigate the differential sensitivity of TPA-resistant and TPA-sensitive mouse cell variants to TNF-alpha-induced apoptosis.
- To elucidate the molecular mechanisms underlying the differential cellular responses to TNF-alpha.
Main Methods:
- Cell culture of JB6-derived mouse RT101 cell variants.
- Treatment with TNF-alpha and assessment of cell viability and apoptosis.
- Analysis of cell cycle progression, DNA fragmentation, and protein dephosphorylation.
- Measurement of AP-1 transcriptional activity and antioxidant enzyme levels.
Main Results:
- TPA-resistant variants were sensitive to TNF-alpha-induced apoptosis, while TPA-sensitive variants were resistant.
- TNF-alpha induced apoptosis, characterized by chromosomal condensation and DNA laddering, in sensitive cells.
- TNF-alpha increased cell cycle rate in resistant cells.
- A transient increase in c-Jun dephosphorylation and AP-1 activity was observed in TNF-alpha-sensitive cells.
- Resistant cells exhibited higher constitutive levels of superoxide dismutase and catalase.
Conclusions:
- Differential sensitivity to TNF-alpha-induced apoptosis is linked to cell cycle regulation and apoptotic pathways.
- Transient c-Jun dephosphorylation and AP-1 activation may promote apoptosis in sensitive cells.
- Enhanced constitutive antioxidant defense in resistant cells may confer resistance to TNF-alpha-induced cell death.