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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.

Cancer Research
|February 15, 1997
PubMed

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.

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