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Alkyl-lysophospholipids activate the SAPK/JNK pathway and enhance radiation-induced apoptosis
G A Ruiter1, S F Zerp, H Bartelink
1Department of Radiotherapy, Antoni van Leeuwenhoek Ziekenhuis/The Netherlands Cancer Institute, Amsterdam.
Abstract:
Alkyl-lysophospholipids (ALPs) represent a new class of antitumor drugs that induce apoptotic cell death in a variety of tumor cell lines. Although their precise mechanism of action is unknown, ALPs primarily act on the cell membrane, where they inhibit signaling through the mitogen-activated protein kinase (MAPK) pathway. Because stimulation of the stress-activated protein kinase/c-Jun NH2-terminal kinase (SAPK/JNK) pathway is essential for radiation-induced apoptosis in certain cell types, we tested the effect of ALPs in combination with ionizing radiation on MAPK/SAPK signaling and apoptosis induction. Here, we present data showing that three ALPs, 1-O-octadecyl-2-O-methyl-rac-glycero-3-phosphocholine, hexadecylphosphocholine, and the novel compound octadecyl-(1,1-dimethyl-piperidinio-4-yl)-phosphate (D-21266) induce time- and dose-dependent apoptosis in the human leukemia cell lines U937 and Jurkat T but not in normal vascular endothelial cells. Moreover, in combination with radiation, ALPs strongly enhance the induction of apoptosis in both leukemic cell lines. All tested ALPs not only prevented MAPK activation, but, like radiation, stimulated the SAPK/JNK cascade within minutes. A dominant-negative mutant of c-Jun inhibited radiation- and ALP-induced apoptosis, indicating a requirement for the SAPK/JNK pathway. Our data support the view that ALPs and ionizing radiation cause an enhanced apoptotic effect by modulating the balance between the mitogenic, antiapoptotic MAPK, and the apoptotic SAPK/JNK pathways. This type of modulation of specific signal transduction pathways in tumor cells may lead to the development of new therapeutic strategies.
Insights
Alkyl-lysophospholipids (ALPs) enhance radiation-induced apoptosis in leukemia cells by modulating MAPK and SAPK/JNK pathways. This combination therapy offers a promising new strategy for cancer treatment.
Area of Science:
- Oncology
- Molecular Biology
- Pharmacology
Background:
- Alkyl-lysophospholipids (ALPs) are a novel class of antitumor agents.
- ALPs induce apoptotic cell death and inhibit mitogen-activated protein kinase (MAPK) signaling.
- Stress-activated protein kinase/c-Jun NH2-terminal kinase (SAPK/JNK) pathway activation is crucial for radiation-induced apoptosis.
Purpose of the Study:
- To investigate the combined effects of ALPs and ionizing radiation on MAPK/SAPK signaling and apoptosis.
- To evaluate the therapeutic potential of ALPs in combination with radiation for leukemia treatment.
Main Methods:
- Treatment of human leukemia cell lines (U937, Jurkat T) and normal vascular endothelial cells with ALPs and/or ionizing radiation.
- Analysis of MAPK and SAPK/JNK pathway activation.
- Assessment of apoptosis induction using a dominant-negative c-Jun mutant.
Main Results:
- ALPs induced apoptosis in leukemia cells but not normal cells.
- Combination therapy with ALPs and radiation significantly enhanced apoptosis in leukemic cells.
- ALPs and radiation both inhibited MAPK and activated SAPK/JNK signaling.
- Inhibition of apoptosis by a dominant-negative c-Jun mutant confirmed the role of the SAPK/JNK pathway.
Conclusions:
- ALPs and ionizing radiation synergistically enhance apoptosis in leukemia cells.
- The combined effect is mediated by modulating the balance between anti-apoptotic MAPK and pro-apoptotic SAPK/JNK pathways.
- Targeting these signaling pathways presents a novel therapeutic strategy for cancer treatment.