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首页> 外文期刊>The Journal of biological chemistry >Up-regulation of the ATPase Inhibitory Factor 1 (IF1) of the Mitochondrial H+-ATP Synthase in Human Tumors Mediates the Metabolic Shift of Cancer Cells to a Warburg Phenotype
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Up-regulation of the ATPase Inhibitory Factor 1 (IF1) of the Mitochondrial H+-ATP Synthase in Human Tumors Mediates the Metabolic Shift of Cancer Cells to a Warburg Phenotype

机译:在人肿瘤中的线粒体H + -ATP合酶的ATP酶抑制因子1(IF1)的上调介导癌细胞的代谢转移到Warburg表型

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The H+-ATP synthase is a reversible engine of mitochondria that synthesizes or hydrolyzes ATP upon changes in cell physiology. ATP synthase dysfunction is involved in the onset and progression of diverse human pathologies. During ischemia, the ATP hydrolytic activity of the enzyme is inhibited by the ATPase inhibitory factor 1 (IF1). The expression of IF1 in human tissues and its participation in the development of human pathology are unknown. Here, we have developed monoclonal antibodies against human IF1 and determined its expression in paired normal and tumor biopsies of human carcinomas. We show that the relative mitochondrial content of IF1 increases significantly in carcinomas, suggesting the participation of IF1 in oncogenesis. The expression of IF1 varies significantly in cancer cell lines. To investigate the functional activity of IF1 in cancer, we have manipulated its cellular content. Overexpression of IF1 or of its pH-insensitive H49K mutant in cells that express low levels of IF1 triggers the up-regulation of aerobic glycolysis and the inhibition of oxidative phosphorylation with concurrent mitochondrial hyperpolarization. Treatment of the cells with the H+-ATP synthase inhibitor oligomycin mimicked the effects of IF1 overexpression. Conversely, small interfering RNA-mediated silencing of IF1 in cells that express high levels of IF1 promotes the down-regulation of aerobic glycolysis and the increase in oxidative phosphorylation. Overall, these findings support that the mitochondrial content of IF1 controls the activity of oxidative phosphorylation mediating the shift of cancer cells to an enhanced aerobic glycolysis, thus supporting an oncogenic role for the de-regulated expression of IF1 in cancer.
机译:H + -ATP合成酶是线粒体的可逆发动机,其在细胞生理的变化时合成或水解ATP。 ATP合成酶功能障碍涉及不同人类病理的开始和进展。在缺血期间,酶的ATP水解活性被ATP酶抑制因子1(IF1)抑制。 IF1在人体组织中的表达及其参与人类病理学的发展是未知的。在这里,我们已经开发了针对人IF1的单克隆抗体,并确定其在人癌的成对正常和肿瘤活组织检查中表达。我们表明,IF1的相对线粒体含量在癌症中显着增加,表明IF1在蜂房中的参与。 IF1的表达在癌细胞系中有显着变化。为了研究IF1在癌症中的功能活动,我们已经操纵其细胞内容。 IF1或其pH不敏感H49K突变体在表达低水平的IF1的细胞中的IF1或其pH的不敏感H49K突变体触发了有氧糖醇的上调和抑制氧化磷酸化与并发线粒体超极化。用H + -ATP合酶抑制剂的细胞治疗寡霉素模仿IF1过表达的影响。相反,在表达高水平IF1的细胞中,小干扰RNA介导的IF1的沉默促进了有氧糖酵解的下调和氧化磷酸化的增加。总体而言,这些发现支持IF1的线粒体含量控制氧化磷酸化的活性介导癌细胞转变为增强的有氧糖溶解,从而支持癌症的癌症表达的致癌作用。

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