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Identification of Intracellular Signaling Events Induced in Viable Cells by Interaction with Neighboring Cells Undergoing Apoptotic Cell Death
Published on: December 27, 2016
Augmentation of apoptosis responses in p53-deficient L1210 cells by compounds directed at blocking NFkappaB
1Department of Biochemistry, Brody School of Medicine, East Carolina University, Greenville, NC 27858, USA.
Abstract:
A mouse leukemia L1210 cell line (Y8) selected for resistance to deoxyadenosine was found to be deficient in the expression of p53 mRNA and protein while maintaining the expression of WAF1/p21 mRNA and protein even under basal conditions. The Y8 cells were shown to be more sensitive to apoptosis induced by a variety of agents when compared to the parental wild-type (WT) L1210 cells. Roscovitine, an inhibitor of cdk 2 and cdk5, was one of the agents that caused increased apoptosis in the Y8 cells through a pathway that ultimately involved the activation of caspase-3 activity. In these studies, the effects of leflunomide and parthenolide (drugs reported to alter the activation of NFkappaB in a variety of cell types) were studied for their cell cycle and apoptotic effects in WT and Y8 cells as single agents and in combination with roscovitine. Leflunomide at IC50 concentrations had little effect on the cell cycle distribution of either the WT or Y8 cells while at higher concentrations caused a G0/G1 block in Y8 cells. Parthenolide, at IC50 concentrations, caused a G0/G1 cell cycle block in the WT and Y8 cells but at higher concentrations caused a G2/M block in the Y8 cells. The combinations of leflunomide and roscovitine or parthenolide and roscovitine did not alter, in a significant way the cell cycle distribution of the Y8 cells. However, in the presence of the combinations of leflunomide and roscovitine or parthenolide and roscovitine there were large increases in the fraction of Y8 cells undergoing early apoptosis without a corresponding increase in the necrotic fraction of cells. These data show that combinations of agents directed at different pathways or different steps of pathways involved in apoptosis can cause the cells to reach an apoptotic threshold that results in synergistic apoptosis.
Insights
This study found that combining drugs targeting different apoptosis pathways synergistically increased cancer cell death. Specifically, combinations of roscovitine with leflunomide or parthenolide significantly enhanced apoptosis in leukemia cells.
Area of Science:
- Molecular Biology
- Cancer Research
- Cell Death Pathways
Background:
- Investigated a p53-deficient mouse leukemia L1210 cell line (Y8) exhibiting increased sensitivity to apoptosis.
- p53 mRNA and protein deficiency was observed in Y8 cells, while WAF1/p21 expression remained intact.
Purpose of the Study:
- To evaluate the effects of leflunomide and parthenolide, alone and in combination with roscovitine, on cell cycle and apoptosis in wild-type (WT) and Y8 leukemia cells.
- To explore the potential for synergistic apoptosis induction by combining agents targeting different cellular pathways.
Main Methods:
- Cell culture of WT and Y8 L1210 leukemia cell lines.
- Treatment with roscovitine (CDK inhibitor), leflunomide, and parthenolide (NF-kappaB modulators) at various concentrations.
- Analysis of cell cycle distribution and apoptosis induction using flow cytometry.
Main Results:
- Roscovitine induced apoptosis in Y8 cells via caspase-3 activation.
- Leflunomide and parthenolide showed differential effects on cell cycle progression in WT and Y8 cells.
- Combinations of leflunomide/parthenolide with roscovitine significantly increased early apoptosis in Y8 cells without increasing necrosis, indicating synergistic effects.
Conclusions:
- Targeting distinct apoptosis pathways or steps concurrently can overcome cellular resistance mechanisms.
- Combined drug therapies can effectively induce synergistic apoptosis, offering a promising strategy for cancer treatment.
- The p53-deficient Y8 cell line serves as a model for studying apoptosis induction and drug synergy.
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