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Akt Stimulates Aerobic Glycolysis in Cancer Cells

Cancer Research · 2004 · Vol. 64(11) · pp. 3892–3899
Rebecca ElstromDaniel E. BauerMonica BuzzaiRobyn KarnauskasMarian H. HarrisDavid R. PlasHongming ZhuangRyan M. CinalliAbass AlaviCharles M. RudinCraig B. Thompson

Abstract

Cancer cells frequently display high rates of aerobic glycolysis in comparison to their nontransformed counterparts, although the molecular basis of this phenomenon remains poorly understood. Constitutive activity of the serine/threonine kinase Akt is a common perturbation observed in malignant cells. Surprisingly, although Akt activity is sufficient to promote leukemogenesis in nontransformed hematopoietic precursors and maintenance of Akt activity was required for rapid disease progression, the expression of activated Akt did not increase the proliferation of the premalignant or malignant cells in culture. However, Akt stimulated glucose consumption in transformed cells without affecting the rate of oxidative phosphorylation. High rates of aerobic glycolysis were also identified in human glioblastoma cells possessing but not those lacking constitutive Akt activity. Akt-expressing cells were more susceptible than control cells to death after glucose withdrawal. These data suggest that activation of the Akt oncogene is sufficient to stimulate the switch to aerobic glycolysis characteristic of cancer cells and that Akt activity renders cancer cells dependent on aerobic glycolysis for continued growth and survival.

Cancer, Hypoxia, and MetabolismPI3K/AKT/mTOR signaling in cancerEpigenetics and DNA MethylationProtein kinase BAnaerobic glycolysisGlycolysisCancer cellCancer researchPI3K/AKT/mTOR pathwayBiologyOxidative phosphorylationCancerCell biology

MeSH terms

AerobiosisAnimalsEnzyme ActivationGlioblastomaGlucoseGlycolysisHumansLeukemiaProto-Oncogene ProteinsTransfectionProtein Serine-Threonine KinasesPhosphatidylinositol 3-KinasesCell Line, TumorProto-Oncogene Proteins c-aktMice

Funding

  • University of Pennsylvania
Citations
1,453
FWCI
16.90
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39
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99%
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References
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