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Mitochondrial respiratory complex I dysfunction promotes tumorigenesis through ROS alteration and AKT activation

机译:线粒体呼吸复合物I功能障碍通过ROS改变和AKT激活促进肿瘤发生

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摘要

Previously, we have shown that a heteroplasmic mutation in mitochondrial DNA-encoded complex I ND5 subunit gene resulted in an enhanced tumorigenesis through increased resistance to apoptosis. Here we report that the tumorigenic phenotype associated with complex I dysfunction could be reversed by introducing a yeast NADH quinone oxidoreductase (NDI1) gene. The NDI1 mediated electron transfer from NADH to Co-Q, bypassed the defective complex I and restored oxidative phosphorylation in the host cells. Alternatively, suppression of complex I activity by a specific inhibitor, rotenone or induction of oxidative stress by paraquat led to an increase in the phosphorylation of v-AKT murine thymoma viral oncogene (AKT) and enhanced the tumorigenesis. On the other hand, antioxidant treatment can ameliorate the reactive oxygen species-mediated AKT activation and reverse the tumorigenicity of complex I-deficient cells. Our results suggest that complex I defects could promote tumorigenesis through induction of oxidative stress and activation of AKT pathway.
机译:以前,我们已经表明,线粒体DNA编码的复合物I ND5亚基基因中的异质突变通过增加对细胞凋亡的抵抗力而导致增强的肿瘤发生。在这里我们报告通过引入酵母NADH醌醌氧化还原酶(NDI1)基因可以逆转与复杂的I功能障碍相关的致瘤表型。 NDI1介导的电子从NADH转移到Co-Q,绕过有缺陷的复合物I并恢复了宿主细胞中的氧化磷酸化作用。或者,通过特异性抑制剂鱼藤酮抑制复合物I活性或鱼藤酮或百草枯诱导氧化应激导致v-AKT鼠胸腺瘤病毒癌基因(AKT)的磷酸化增加,并增强了肿瘤发生。另一方面,抗氧化剂处理可以改善活性氧介导的AKT活化并逆转复杂的I缺陷细胞的致瘤性。我们的结果表明,复杂的I缺陷可通过诱导氧化应激和激活AKT途径促进肿瘤发生。

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  • 来源
    《Human Molecular Genetics》 |2011年第23期|p.4605-4616|共12页
  • 作者单位

    Department of Cellular and Structural Biology, University of Texas Health Science Center at San Antonio, San Antonio, TX 78229 USA,;

    School of Life Science, Wenzhou Medical College, Wenzhou 325035, China and;

    Faculty of Public Health, College of Medicine, Xi'an Jiaotong University, Xi'an 710061, China;

    Department of Cellular and Structural Biology, University of Texas Health Science Center at San Antonio, San Antonio, TX 78229 USA,;

    Department of Cellular and Structural Biology, University of Texas Health Science Center at San Antonio, San Antonio, TX 78229 USA,;

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