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Nitric-oxide-induced necrosis and apoptosis in PC12 cells mediated by mitochondria

A Bal-Price1, G C Brown

  • 1Department of Biochemistry, University of Cambridge, Cambridge, England. akp26@mole.bio.cam.ac.uk

Journal of Neurochemistry
|September 15, 2000
PubMed

Insights

Nitric oxide (NO) triggers cell death through mitochondrial pathways. NO induces necrosis by inhibiting respiration and apoptosis via caspase activation, with glucose availability determining the cell death type.

Area of Science:

  • Cell Biology
  • Biochemistry
  • Toxicology

Background:

  • Nitric oxide (NO) is a signaling molecule with diverse cellular functions.
  • NO can induce cell death, but the underlying mechanisms, particularly the role of mitochondria, require further elucidation.

Purpose of the Study:

  • To investigate the role of mitochondria in nitric oxide (NO)-induced cell death in PC12 cells.
  • To determine the mechanisms by which NO triggers necrosis and apoptosis.

Main Methods:

  • PC12 cells were treated with NO donors (SNAP, NOC-18) or mitochondrial respiration inhibitors.
  • Cellular respiration, mitochondrial membrane potential, ATP levels, and nuclear morphology were assessed.
  • Caspase activation, cytochrome c release, and the effect of inhibitors (caspase inhibitor, cyclosporin A) were analyzed.

Main Results:

  • NO donors inhibited mitochondrial respiration and decreased mitochondrial membrane potential, leading to ATP depletion and necrosis in the absence of glucose.
  • In the presence of glucose, NO induced apoptosis mediated by caspase activation and cytochrome c release.
  • Mitochondrial inhibitors mimicked NO effects, suggesting a common pathway.
  • Glucose availability critically determined the mode of cell death (necrosis vs. apoptosis).

Conclusions:

  • Mitochondria play a crucial role in both NO-induced necrosis and apoptosis.
  • NO-induced necrosis results from respiratory inhibition and ATP depletion.
  • NO-induced apoptosis involves mitochondrial permeability transition pore opening, cytochrome c release, and caspase activation.
  • The balance between glycolysis and mitochondrial respiration dictates the cell death pathway.

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