Cancer Research · 2016 · 134 citations · 45 references
Negative RegulatorPathologyMetabolic RemodelingHigh-grade GliomasWarburg EffectCancer BiologyGliomaRedox BiologyTumor BiologyOxidative StressNeuro-oncologyRedox RegulatorCancer Cell BiologyCancer MetabolismRadiation OncologyCancer ResearchTumor GrowthCancer CellsCell BiologyMitochondrial FunctionTumor SuppressorMedicineCancer GrowthGlioblastoma
Proliferating cancer cells are characterized by high rates of glycolysis, lactate production, and altered mitochondrial metabolism. This metabolic reprogramming provides important metabolites for proliferation of tumor cells, including glioblastoma. These biological processes, however, generate oxidative stress that must be balanced through detoxification of reactive oxygen species (ROS). Using an unbiased retroviral loss-of-function screen in nontransformed human astrocytes, we demonstrate that mitochondrial PTEN-induced kinase 1 (PINK1) is a regulator of the Warburg effect and negative regulator of glioblastoma growth. We report that loss of PINK1 contributes to the Warburg effect through ROS-dependent stabilization of hypoxia-inducible factor-1A and reduced pyruvate kinase muscle isozyme 2 activity, both key regulators of aerobic glycolysis. Mechanistically, PINK1 suppresses ROS and tumor growth through FOXO3a, a master regulator of oxidative stress and superoxide dismutase 2. These findings highlight the importance of PINK1 and ROS balance in normal and tumor cells. PINK1 loss was observed in a significant number of human brain tumors including glioblastoma (n > 900) and correlated with poor patient survival. PINK1 overexpression attenuates in vivo glioblastoma growth in orthotopic mouse xenograft models and a transgenic glioblastoma model in Drosophila Cancer Res; 76(16); 4708-19. ©2016 AACR.
45
Roger Stupp, Monika E. Hegi, Warren Mason et al. · The Lancet Oncology · 2009 · 7.7K citations
Roel G.W. Verhaak, Katherine A. Hoadley, Elizabeth Purdom et al. · Cancer Cell · 2010 · 7.5K citations · Full text
<i>MGMT</i> Gene Silencing and Benefit from Temozolomide in Glioblastoma
Monika E. Hegi, Annie‐Claire Diserens, Thierry Gorlia et al. · New England Journal of Medicine · 2005 · 7.1K citations · Full text
The Somatic Genomic Landscape of Glioblastoma
Cameron Brennan, Roel G.W. Verhaak, Aaron McKenna et al. · Cell · 2013 · 5K citations · Full text