Combined Targeting of PDK1 and EGFR Triggers Regression of Glioblastoma by Reversing the Warburg Effect

被引:98
作者
Velpula, Kiran Kumar [1 ]
Bhasin, Arnima [1 ]
Asuthkar, Swapna [1 ]
Tsung, Andrew J. [1 ,2 ,3 ]
机构
[1] Univ Illinois, Coll Med Peoria, Dept Canc Biol & Pharmacol, Peoria, IL USA
[2] Univ Illinois, Coll Med Peoria, Dept Neurosurg, Peoria, IL USA
[3] Illinois Neurol Inst, Peoria, IL 61637 USA
关键词
PYRUVATE-DEHYDROGENASE KINASE; CANCER METABOLISM; CELL-METABOLISM; TUMOR HYPOXIA; PHOSPHORYLATION; GLYCOLYSIS; EXPRESSION; GROWTH; ADAPTATION; MULTIFORME;
D O I
10.1158/0008-5472.CAN-13-1868
中图分类号
R73 [肿瘤学];
学科分类号
100214 ;
摘要
Glioblastoma multiforme is the most aggressive primary brain tumor in adults. Overexpression of the EGF receptor (EGFR) is recognized as a widespread oncogenic signature in glioblastoma multiforme, but the complexity of its contributions is not fully understood, nor the most effective ways to leverage anti-EGFR therapy in this setting. Hypoxia is known to drive the aggressive character of glioblastoma multiforme by promoting aerobic glycolysis rather than pyruvate oxidation carried out in mitochondria (OXPHOS), a phenomenon termed the Warburg effect, which is a general feature of oncogenesis. In this study, we report that hypoxia drives expression of the pyruvate dehydrogenase kinase (PDK1) and EGFR along with the hypoxiainducing factor (HIF)-1 alpha in human glioblastoma multiforme cells. PDK1 is a HIF-1-regulated gene and our findings indicated that hypoxia-induced PDK1 expression may promote EGFR activation, initiating a feed-forward loop that can sustain malignant progression. RNAi-mediated attenuation of PDK1 and EGFR lowered PDK1-EGFR activation and decreased HIF-1 alpha expression, shifting the Warburg phenotype to OXPHOS and inhibiting glioblastoma multiforme growth and proliferation. In clinical specimens of glioblastoma multiforme, we found that immunohistochemical expression of PDK1, EGFR, and HIF-1 alpha were elevated in glioblastoma multiforme specimens when compared with normal brain tissues. Collectively, our studies establish PDK1 as a key driver and candidate therapeutic target in glioblastoma multiforme. (C) 2013 AACR.
引用
收藏
页码:7277 / 7289
页数:13
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