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Apoptosis induced by anthracycline antibiotics in P388 parent and multidrug-resistant cells
Y H Ling1, W Priebe, R Perez-Soler
1Department of Head, Neck, and Thoracic Medical Oncology, University of Texas M. D. Anderson Cancer Center, Houston 77030.
Abstract:
The effect of the topoisomerase II inhibitor doxorubicin and its non-cross-resistant analogue annamycin on DNA degradation and programmed cell death was examined in murine leukemia P388 cells. P388 parental cells exposed to various concentrations of doxorubicin and annamycin for 24 h displayed dose-dependent DNA cleavage: at 1 microM, both doxorubicin and annamycin were effective in inducing DNA breakdown, but at 10 microM, the effect was markedly decreased or totally absent. In multidrug-resistant P388/Dox cells, doxorubicin did not cause DNA cleavage, while 10 microM annamycin had a significant effect. By agarose gel analysis, drug-induced DNA fragmentation showed the characteristic pattern of internucleosomal ladder. Morphologically, P388 cells treated with 1 microM doxorubicin or annamycin for 24 h showed a reduction in cell volume and condensation of nuclear structures. Similar changes were observed in P388/Dox cells exposed to 10 microM annamycin for 24 h but not in cells exposed to 10 microM doxorubicin. Time course studies demonstrated that DNA fragmentation was detected 12 h after incubation with 1 microM doxorubicin or annamycin, while loss of membrane integrity appeared at 24 h, thus indicating that DNA degradation was a preceding event. DNA fragmentation caused by doxorubicin and annamycin was inhibited by the RNA synthesis inhibitor actinomycin D, the protein synthesis inhibitor cycloheximide, and the endonuclease inhibitor aurintricarboxylic acid. Drug-induced cell death was partially prevented by cycloheximide and aurintricarboxylic acid, thus suggesting that the apoptotic process caused by these drugs requires gene expression, synthesis of new proteins, and activation of endogenous nucleases. In contrast, DNA cleavage was not affected by incubating cells with 1 mM ethylene glycol-bis(2-aminoethyl ether)-N,N,N',N'-tetraacetic acid, thus indicating that intracellular calcium depletion does not affect anthracycline-induced apoptosis. The results obtained demonstrate that the cell killing effect of anthracyclines is mediated, at least in part, by the induction of apoptosis.
Insights
Doxorubicin and annamycin induce DNA degradation and apoptosis in leukemia cells. This programmed cell death requires gene expression and protein synthesis, but not intracellular calcium.
Area of Science:
- Molecular Biology
- Cell Biology
- Pharmacology
Background:
- Topoisomerase II inhibitors like doxorubicin are crucial in cancer therapy.
- Multidrug resistance (MDR) can limit the efficacy of chemotherapeutic agents.
- Understanding the mechanisms of drug-induced cell death is vital for developing new treatments.
Purpose of the Study:
- To investigate the effects of doxorubicin and annamycin on DNA degradation and apoptosis in leukemia cells.
- To compare the activity of these drugs in both sensitive and multidrug-resistant cell lines.
- To elucidate the molecular pathways involved in anthracycline-induced apoptosis.
Main Methods:
- Exposure of murine leukemia P388 cells (parental and multidrug-resistant P388/Dox) to doxorubicin and annamycin.
- Analysis of DNA cleavage and fragmentation using agarose gel electrophoresis.
- Morphological assessment of cellular changes.
- Time course studies to determine the sequence of events.
- Inhibition studies using actinomycin D, cycloheximide, and aurintricarboxylic acid.
Main Results:
- Doxorubicin and annamycin induced dose-dependent DNA cleavage in sensitive cells, with effects diminishing at higher concentrations.
- Annamycin, but not doxorubicin, showed significant DNA cleavage in multidrug-resistant cells.
- DNA fragmentation followed an internucleosomal ladder pattern, characteristic of apoptosis.
- Cellular changes included reduced volume and nuclear condensation, preceding membrane integrity loss.
- Apoptosis induction was dependent on RNA and protein synthesis and endonuclease activation.
- Intracellular calcium levels did not influence anthracycline-induced apoptosis.
Conclusions:
- Anthracycline-induced cell death in leukemia is largely mediated by apoptosis.
- Annamycin demonstrates potential efficacy against doxorubicin-resistant leukemia cells.
- The apoptotic pathway involves gene expression, protein synthesis, and endogenous nucleases, independent of calcium signaling.