The NAE inhibitor pevonedistat (MLN4924) synergizes with TNF-α to activate apoptosis

F S Wolenski1, C D Fisher1, T Sano2

  • 1Drug Safety Research and Evaluation, Millennium Pharmaceuticals, Inc., a wholly owned subsidiary of Takeda Pharmaceutical Company Limited , 35 Landsdowne Street, Cambridge, MA, USA.

Cell Death Discovery
|August 24, 2016
PubMed

Insights

The investigational drug pevonedistat combined with tumor necrosis factor-alpha (TNF-α) causes synergistic cell death. This novel toxicity mechanism involves caspase-8 and necroptosis, confirmed in cell and rat models.

Area of Science:

  • Pharmacology
  • Toxicology
  • Cell Biology

Background:

  • Drug-induced toxicity is a major hurdle in drug development.
  • Inflammation, particularly tumor necrosis factor-alpha (TNF-α), may synergize with drugs to cause toxicity.
  • Cell-based models are valuable for investigating drug toxicity mechanisms.

Purpose of the Study:

  • To investigate the synergistic cytotoxicity of pevonedistat (MLN4924), a NEDD8-activating enzyme (NAE) inhibitor, with TNF-α.
  • To elucidate the mechanism underlying the observed synergistic toxicity.
  • To validate the findings in preclinical in vivo models.

Main Methods:

  • Utilized cell-based assays to assess cytotoxicity of pevonedistat and TNF-α combination treatment.
  • Investigated cell death pathways, including caspase-8 activation and necroptosis markers (trimerized MLKL).
  • Performed in vivo studies in rats to evaluate liver toxicity and hepatocyte necrosis.

Main Results:

  • Combination treatment of pevonedistat and TNF-α induced rapid, synergistic cell death, not observed with single agents.
  • Caspase-8 mediated the cell death, with increased p10 subunit accumulation.
  • Inhibition of apoptosis shifted the cell death mechanism to necroptosis.
  • In vivo studies showed combination treatment elevated liver damage markers and caused hepatocyte necrosis.

Conclusions:

  • Pevonedistat and TNF-α exhibit synergistic toxicity through caspase-8-mediated apoptosis and necroptosis.
  • Trimerized MLKL serves as a biomarker for this combined toxicity.
  • The findings highlight a novel drug-cytokine interaction with significant implications for drug safety assessment.

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