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Increased gadd153 messenger RNA level is associated with apoptosis in human leukemic cells treated with etoposide
B Eymin1, L Dubrez, M Allouche
1Laboratory of Oncohematology and Pharmacology, CJF INSERM 94-08, UFR of Medicine/Pharmacy, Dijon, France.
Abstract:
Treatment of leukemic cells with topoisomerase inhibitors can lead to growth arrest and subsequent apoptotic cell death. The relationships between cell cycle regulation and apoptosis triggering remain poorly understood. The gadd153 gene encodes the nuclear protein CHOP 10 that acts as a negative modulator of CCAAT/enhancer binding protein transcriptional factors and inhibits cell cycle progression. We have investigated the relationships between gadd153 gene expression and apoptosis induction in four human leukemic cell lines with different sensitivities to apoptosis induced by etoposide (VP-16), a topoisomerase II inhibitor. The gadd153 gene was constitutively expressed in the four studied cell lines. In U937 and HL-60 cells that were very sensitive to apoptosis induction by the drug, VP-16 induced a time- and dose-dependent increase of gadd153 gene mRNA expression. Using agarose gel electrophoresis and a quantitative filter elution assay, apoptotic DNA fragmentation was observed to begin when gadd153 gene expression increased. Equitoxic doses of VP-16 (as defined using a 96-h 3-4,5-dimethylthiazol-2,5-diphenyltetrazolium bromide assay) did not increase the gadd153 mRNA level in K562 and KCL22 cell lines that were more resistant to apoptosis induction by the drug. Nuclear run-on and mRNA stability experiments demonstrated that VP-16 treatment increased gadd153 gene transcription in the sensitive U937 cells. Cycloheximide did not prevent gadd153 expression increase. Both gadd153 mRNA level increase and internucleosomal DNA fragmentation were inhibited by N-tosyl-L-phenylalanine chloromethylketone, a serine threonine protease inhibitor, N-acetyl-leucyl-leucyl-norleucinal, an inhibitor of calpain, N-acetylcysteine, an inhibitor of oxidative metabolism, and overexpression of Bcl-2. Z-VAD and Z-DEVD peptides that inhibit interleukin 1beta-converting enzyme-like proteases suppressed DNA fragmentation without preventing gadd153 mRNA increase in VP-16-treated U937 cells. These results indicate that gadd153 gene expression increase occurs downstream of events sensitive to N-tosyl-L-phenylalanine chloromethylketone, calpain inhibitor I, and Bcl-2 and upstream of interleukin 1beta-converting enzyme-related proteases activation in leukemic cells in which treatment with VP-16 induces rapid apoptosis.
Insights
Etoposide (VP-16) treatment increases gadd153 gene expression in sensitive leukemic cells, preceding DNA fragmentation. This gadd153 gene induction is a key event in VP-16-induced apoptosis.
Area of Science:
- Molecular Biology
- Cell Biology
- Cancer Research
Background:
- Topoisomerase inhibitors like etoposide (VP-16) induce apoptosis in leukemic cells.
- The precise mechanisms linking cell cycle regulation and apoptosis, particularly the role of the gadd153 gene, are not fully understood.
- The gadd153 gene encodes CHOP 10, a protein that negatively regulates CCAAT/enhancer binding proteins and inhibits cell cycle progression.
Purpose of the Study:
- To investigate the relationship between gadd153 gene expression and apoptosis induction in human leukemic cell lines with varying sensitivities to VP-16.
- To determine the temporal and mechanistic links between gadd153 gene expression, DNA fragmentation, and apoptosis signaling pathways.
Main Methods:
- Utilized four human leukemic cell lines (U937, HL-60, K562, KCL22) with differential VP-16 sensitivity.
- Measured gadd153 gene mRNA expression using quantitative techniques.
- Assessed DNA fragmentation via agarose gel electrophoresis and filter elution assays.
- Performed nuclear run-on assays and mRNA stability experiments.
- Investigated the effects of various inhibitors (cycloheximide, protease inhibitors, N-acetylcysteine) and Bcl-2 overexpression on gadd153 expression and apoptosis.
Main Results:
- VP-16 induced a time- and dose-dependent increase in gadd153 mRNA in sensitive cell lines (U937, HL-60), preceding DNA fragmentation.
- Resistant cell lines (K562, KCL22) showed no significant increase in gadd153 mRNA at equitoxic VP-16 doses.
- VP-16 increased gadd153 gene transcription in sensitive cells, independent of new protein synthesis (cycloheximide).
- Inhibitors of proteases, oxidative metabolism, and Bcl-2 overexpression blocked gadd153 mRNA increase and DNA fragmentation.
- Interleukin 1beta-converting enzyme (ICE)-like protease inhibitors blocked DNA fragmentation but not gadd153 mRNA increase.
Conclusions:
- gadd153 gene expression is a critical early event in VP-16-induced apoptosis in sensitive leukemic cells.
- The induction of gadd153 occurs downstream of protease and oxidative stress-sensitive pathways and upstream of ICE-like protease activation.
- gadd153 acts as a key mediator in the apoptotic cascade triggered by topoisomerase II inhibition.