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Pyruvate Dehydrogenase Complex Activity Controls Metabolic and Malignant Phenotype in Cancer Cells

机译:丙酮酸脱氢酶复合物活性控制代谢和恶性 癌症中的表型 细胞

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摘要

High lactate generation and low glucose oxidation, despite normal oxygen conditions, are commonly seen in cancer cells and tumors. Historically known as the Warburg effect, this altered metabolic phenotype has long been correlated with malignant progression and poor clinical outcome. However, the mechanistic relationship between altered glucose metabolism and malignancy remains poorly understood. Here we show that inhibition of pyruvate dehydrogenase complex (PDC) activity contributes to the Warburg metabolic and malignant phenotype in human head and neck squamous cell carcinoma. PDC inhibition occurs via enhanced expression of pyruvate dehydrogenase kinase-1 (PDK-1), which results in inhibitory phosphorylation of the pyruvate dehydrogenase α (PDHα) subunit. We also demonstrate that PDC inhibition in cancer cells is associated with normoxic stabilization of the malignancy-promoting transcription factor hypoxia-inducible factor-1α (HIF-1α) by glycolytic metabolites. Knockdown of PDK-1 via short hairpin RNA lowers PDHα phosphorylation, restores PDC activity, reverts the Warburg metabolic phenotype, decreases normoxic HIF-1α expression, lowers hypoxic cell survival, decreases invasiveness, and inhibits tumor growth. PDK-1 is an HIF-1-regulated gene, and these data suggest that the buildup of glycolytic metabolites, resulting from high PDK-1 expression, may in turn promote HIF-1 activation, thus sustaining a feed-forward loop for malignant progression. In addition to providing anabolic support for cancer cells, altered fuel metabolism thus supports a malignant phenotype. Correction of metabolic abnormalities offers unique opportunities for cancer treatment and may potentially synergize with other cancer therapies.
机译:尽管氧气条件正常,但高乳酸生成和低葡萄糖氧化是癌细胞和肿瘤中常见的现象。长期以来,这种改变的代谢表型与恶性进展和不良的临床预后相关,历史上被称为Warburg效应。然而,葡萄糖代谢改变与恶性肿瘤之间的机制关系仍然知之甚少。在这里,我们显示丙酮酸脱氢酶复合物(PDC)活性的抑制有助于人类头颈部鳞状细胞癌的Warburg代谢和恶性表型。 PDC抑制通过丙酮酸脱氢酶激酶1(PDK-1)的增强表达而发生,这导致丙酮酸脱氢酶α(PDHα)亚基的抑制性磷酸化。我们还证明了癌细胞中的PDC抑制与糖酵解代谢产物恶性促进转录因子低氧诱导因子1α(HIF-1α)的常氧稳定有关。通过短发夹RNA抑制PDK-1降低PDHα磷酸化,恢复PDC活性,恢复Warburg代谢表型,降低常氧HIF-1α表达,降低低氧细胞存活率,降低侵袭性并抑制肿瘤 增长。 PDK-1是一种HIF-1调控基因,这些数据表明 PDK-1高表达导致糖酵解代谢产物堆积, 可能进而促进HIF-1激活,从而维持前馈循环 恶性进展。除了为癌症提供合成代谢支持 细胞,改变燃料代谢从而支持恶性表型。更正 代谢异常的发生为癌症治疗提供了独特的机会 并可能与其他癌症疗法协同作用。

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