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K-ras G12V transformation leads to mitochondrial dysfunction and a metabolic switch from oxidative phosphorylation to glycolysis

机译:K-ras G12V转化导致线粒体功能障碍和代谢从氧化磷酸化到糖酵解的转变

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Increased aerobic glycolysis and oxidative stress are important features of cancer cell metabolism, but the underlying biochemical and molecular mechanisms remain elusive. Using a tetracycline inducible model, we show that activation of K-rassupG12V/sup causes mitochondrial dysfunction, leading to decreased respiration, elevated glycolysis, and increased generation of reactive oxygen species. The K-RAS protein is associated with mitochondria, and induces a rapid suppression of respiratory chain complex-I and a decrease in mitochondrial transmembrane potential by affecting the cyclosporin-sensitive permeability transition pore. Furthermore, pre-induction of K-rassupG12V/sup expression in vitro to allow metabolic adaptation to high glycolytic metabolism enhances the ability of the transformed cells to form tumor in vivo. Our study suggests that induction of mitochondrial dysfunction is an important mechanism by which K-rassupG12V/sup causes metabolic changes and ROS stress in cancer cells, and promotes tumor development.
机译:有氧糖酵解和氧化应激增加是癌细胞代谢的重要特征,但潜在的生化和分子机制仍然难以捉摸。使用四环素诱导模型,我们显示K-ras G12V 的激活引起线粒体功能障碍,导致呼吸减少,糖酵解升高和活性氧生成增加。 K-RAS蛋白与线粒体相关,并通过影响环孢菌素敏感的通透性转换孔,诱导呼吸链复合物-I的快速抑制和线粒体跨膜电位的降低。此外,体外预诱导K-ras G12V 表达以使代谢适应高糖酵解代谢,可增强转化细胞在体内形成肿瘤的能力。我们的研究表明,线粒体功能障碍的诱导是K-ras G12V 引起癌细胞代谢变化和ROS应激并促进肿瘤发展的重要机制。

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