Shift of the cellular oxidation-reduction potential in neural cells expressing Bcl-2

L M Ellerby1, H M Ellerby, S M Park

  • 1Program on Aging, Burnham Institute, La Jolla Cancer Research Center, CA 92037, USA.

Journal of Neurochemistry
|September 1, 1996
PubMed

Insights

The protooncogene bcl-2 reduces cell death by altering cellular redox potential. Overexpression of bcl-2 in neural cells leads to a more reduced state, impacting glutathione and pyridine nucleotide levels.

Area of Science:

  • Neuroscience
  • Molecular Biology
  • Cell Biology

Background:

  • The protooncogene bcl-2 inhibits apoptosis and necrosis in various cell types, including neural cells.
  • The precise mechanism by which Bcl-2 protein prevents cell death is not fully understood.
  • One proposed mechanism involves Bcl-2 reducing cellular reactive oxygen species generation.

Purpose of the Study:

  • To investigate whether bcl-2 overexpression influences cellular redox state in neural cells.
  • To evaluate the proposed mechanism of Bcl-2 action via modulation of reactive oxygen species.

Main Methods:

  • Measurement of antioxidant enzyme activities, glutathione, and pyridine nucleotide levels.
  • Comparison between control and bcl-2 transfectant neural cell lines (PC12 and GT1-7).

Main Results:

  • Neural cells overexpressing bcl-2 exhibited elevated total glutathione levels.
  • Reduced ratios of oxidized glutathione to total glutathione were observed in bcl-2 transfectants.
  • The NAD+/NADH ratio was significantly decreased in bcl-2-expressing cells.
  • Antioxidant enzyme activities showed varied responses, with some increases in PC12 cells but no consistent changes across both cell lines.

Conclusions:

  • Overexpression of bcl-2 shifts the cellular redox potential towards a more reduced state in neural cells.
  • This shift occurs without consistently altering the major cellular antioxidant enzymes.
  • The findings support a role for redox modulation in bcl-2-mediated cell death inhibition.