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Autophagy facilitates glycolysis during Ras-mediated oncogenic transformation

Molecular Biology of the Cell · 2010 · Vol. 22(2) · pp. 165–178
Rebecca LockSrirupa RoyCandia M. KenificJudy S. SuEduardo SalasSabrina M. RonenJayanta Debnath

Abstract

The protumorigenic functions for autophagy are largely attributed to its ability to promote cancer cell survival in response to diverse stresses. Here we demonstrate an unexpected connection between autophagy and glucose metabolism that facilitates adhesion-independent transformation driven by a strong oncogenic insult-mutationally active Ras. In cells ectopically expressing oncogenic H-Ras as well as human cancer cell lines harboring endogenous K-Ras mutations, autophagy is induced following extracellular matrix detachment. Inhibiting autophagy due to the genetic deletion or RNA interference-mediated depletion of multiple autophagy regulators attenuates Ras-mediated adhesion-independent transformation and proliferation as well as reduces glycolytic capacity. Furthermore, in contrast to autophagy-competent cells, both proliferation and transformation in autophagy-deficient cells expressing oncogenic Ras are insensitive to reductions in glucose availability. Overall, increased glycolysis in autophagy-competent cells facilitates Ras-mediated adhesion-independent transformation, suggesting a unique mechanism by which autophagy may promote Ras-driven tumor growth in specific metabolic contexts.

Autophagy in Disease and TherapyMetabolism, Diabetes, and CancerPancreatic function and diabetesAutophagyBiologyCell biologyCancer cellGlycolysisBAG3Cell adhesionCell growthCell cultureCell

MeSH terms

Autophagy-Related Protein 12Autophagy-Related Protein 7AnimalsAutophagyCell AdhesionCell Line, TransformedCell Transformation, NeoplasticFemaleGlycolysisHumansTumor Cells, Culturedras ProteinsProto-Oncogene Proteins c-bcl-2AnoikisSmall Ubiquitin-Related Modifier Proteins
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