The PI3K/Akt Pathway Regulates Oxygen Metabolism via Pyruvate Dehydrogenase (PDH)-E1α Phosphorylation

George J Cerniglia1, Souvik Dey1, Shannon M Gallagher-Colombo1

  • 1Department of Radiation Oncology, Perelman School of Medicine at the University of Pennsylvania, Philadelphia, Pennsylvania.

Insights

Inhibiting the PI3K/Akt pathway reduces tumor oxygen consumption by increasing pyruvate dehydrogenase (PDH) phosphorylation. This mechanism links the PI3K/mTOR pathway to cancer cell metabolism and PDH regulation.

Area of Science:

  • Biochemistry
  • Molecular Biology
  • Oncology

Background:

  • The PI3K/Akt pathway is frequently dysregulated in cancer.
  • Inhibition of this pathway has been observed to decrease hypoxia in head and neck cancer xenografts.
  • The precise molecular mechanisms linking PI3K/Akt inhibition to altered tumor oxygen consumption remain unclear.

Purpose of the Study:

  • To elucidate the molecular mechanism by which PI3K/Akt pathway inhibition affects tumor cell oxygen consumption.
  • To investigate the role of pyruvate dehydrogenase (PDH) phosphorylation in this process.

Main Methods:

  • Oxygen consumption rate (OCR) was measured using Clark electrode and extracellular flux analyzer.
  • Pharmacologic and genetic manipulations of the PI3K/Akt/mTOR pathway were employed.
  • Levels of PDH-E1α phosphorylation were assessed.
  • Experiments involved PTEN expression, dichloroacetate (DCA) treatment, and mutant PDH-E1α expression.

Main Results:

  • Inhibition of PI3K/mTOR or Akt/PI3K decreased OCR by 30-40% in vitro.
  • Pathway inhibition increased PDH-E1α phosphorylation, inhibiting its activity.
  • Restoring PTEN function increased PDH-E1α phosphorylation and decreased OCR.
  • DCA treatment and expression of non-phosphorylatable PDH-E1α reversed the OCR decrease.

Conclusions:

  • The PI3K/mTOR pathway is associated with tumor cell oxygen consumption, partly regulated by PDH phosphorylation.
  • This finding provides insight into PI3K pathway activation in tumor metabolism.
  • Results have implications for designing cancer therapy trials targeting the PI3K pathway.

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