The histone deacetylase inhibitor sodium butyrate interacts synergistically with phorbol myristate acetate (PMA) to induce mitochondrial damage and apoptosis in human myeloid leukemia cells through a tumor necrosis factor-α-mediated process

Mohamed Rahmani, Yun Dai, Steven Grant

Research output: Contribution to journalArticlepeer-review

54 Scopus citations

Abstract

Interactions between the histone deacetylase inhibitor sodium butyrate (SB) and phorbol 12-myristate 13-acetate (PMA) were examined in human myeloid leukemia cells (U937 and HL-60). Exposure of U937 cells to 1 mM SB and 1 nM PMA (24 h) markedly induced caspase activation and apoptosis, events accompanied by impaired differentiation induction (e.g., reduced plastic adherence and diminished expression of CD11b) as well as reduced clonogenic survival. The PKC inhibitor GF109203X blocked SB-/PMA-mediated apoptosis. Comparable results were obtained in HL-60 cells. Apoptosis was associated with early procaspase 8 activation and Bid cleavage, accompanied by pronounced mitochondrial damage (e.g., loss of mitochondrial membrane potential (ΔΨm) and cytochrome c release). Neutralization of endogenous TNFα by a human soluble TNF receptor substantially blocked SB-/PMA-induced cytochrome c release and apoptosis. Consistent with this, ectopic expression of a mutant dominant-negative caspase 8 or CrmA resulted in a significant decrease in SB-/PMA-induced apoptosis, whereas Bcl-2 overexpression did not. SB/PMA treatment also triggered a decline in the S and G2M populations, and dephosphorylation of p34cdc2. These results indicate that SB interacts with low concentrations of PMA to induce apoptosis in human leukemia cells and that this process proceeds through a PKC-/TNFα-dependent pathway in which procaspase 8 and Bid activation play key roles.

Original languageBritish English
Pages (from-to)31-47
Number of pages17
JournalExperimental Cell Research
Volume277
Issue number1
DOIs
StatePublished - 2002

Keywords

  • Apoptosis
  • Butyrate
  • Cytochrome c
  • Leukemia
  • PMA
  • TNFα

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