Paraoxon induces apoptosis in EL4 cells via activation of mitochondrial pathways

A M Saleh1, C Vijayasarathy, L Masoud

  • 1Department of Biochemistry, Faculty of Medicine and Health Sciences, United Arab Emirates University, PO Box 17 666, Al Ain, United Arab Emirates. asaleh@uaeu.ac.ae

Insights

Paraoxon (POX) induces T-lymphoma cell death via mitochondrial damage, not anticholinesterase action. This pathway involves cytochrome c release and caspase-9 activation, offering a target for organophosphate poisoning treatment.

Area of Science:

  • Toxicology
  • Cell Biology
  • Biochemistry

Background:

  • Organophosphorus compounds, like paraoxon (POX), are known for anticholinesterase activity.
  • Non-cholinergic doses of POX induce apoptotic cell death in murine EL4 T-lymphocytic leukemia cells via caspase-3 activation.

Purpose of the Study:

  • To elucidate the sequence of events in POX-stimulated apoptosis using caspase-specific inhibitors.
  • To investigate the role of mitochondrial pathways in POX-induced apoptosis.

Main Methods:

  • Utilized caspase-specific inhibitors (zLEHD-fmk, zIETD-fmk, zVAD-fmk).
  • Assessed cytochrome c translocation using Western blot analysis.
  • Measured mitochondrial transmembrane potential.
  • Analyzed Bax protein translocation to mitochondria.

Main Results:

  • Caspase-9 inhibition (zLEHD-fmk) attenuated POX-induced apoptosis, while caspase-8 inhibition (zIETD-fmk) had no effect.
  • POX treatment caused dose- and time-dependent cytochrome c release from mitochondria and disrupted mitochondrial transmembrane potential, independent of caspase activation.
  • POX induced Bax translocation to mitochondria, which was subsequent to caspase cascade activation.

Conclusions:

  • POX induces apoptosis in EL4 cells through direct mitochondrial damage, including disruption of membrane potential and cytochrome c release, leading to caspase-9 activation.
  • Targeting this POX-induced mitochondrial pathway could be a strategy to mitigate organophosphate poisoning.

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