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首页> 外文期刊>Redox Biology >Involvement of the mitochondrial nuclease EndoG in the regulation of cell proliferation through the control of reactive oxygen species
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Involvement of the mitochondrial nuclease EndoG in the regulation of cell proliferation through the control of reactive oxygen species

机译:通过反应性氧物种的控制涉及线粒体核酸酶engog在细胞增殖调节中

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The apoptotic nuclease EndoG is involved in mitochondrial DNA replication. Previous results suggested that, in addition to regulate cardiomyocyte hypertrophy, EndoG could be involved in cell proliferation. Here, by using in vivo and cell culture models, we investigated the role of EndoG in cell proliferation. Genetic deletion of Endog both in vivo and in cultured cells or Endog silencing in vitro induced a defect in rodent and human cell proliferation with a tendency of cells to accumulate in the G1 phase of cell cycle and increased reactive oxygen species (ROS) production. The defect in cell proliferation occurred with a decrease in the activity of the AKT/PKB-GSK-3β-Cyclin D axis and was reversed by addition of ROS scavengers. EndoG deficiency did not affect the expression of ROS detoxifying enzymes, nor the expression of the electron transport chain complexes and oxygen consumption rate. Addition of the micropeptide Humanin to EndoG-deficient cells restored AKT phosphorylation and proliferation without lowering ROS levels. Thus, our results show that EndoG is important for cell proliferation through the control of ROS and that Humanin can restore cell division in EndoG-deficient cells and counteracts the effects of ROS on AKT phosphorylation.
机译:凋亡核酸酶NeNoG参与线粒体DNA复制。以前的结果表明,除了调节心肌细胞肥大外,DEMOG还可参与细胞增殖。在这里,通过使用体内和细胞培养模型,我们研究了engog在细胞增殖中的作用。在体内和培养的细胞中的Endog遗传缺失在体外诱导啮齿动物和人细胞增殖的缺陷,细胞倾向于细胞循环的G1相中积聚并增加反应性氧物质(ROS)生产。细胞增殖中的缺陷发生在AKT / PKB-GSK-3β-Cyclin D轴的活性降低,并通过添加ROS清除剂来逆转。 NupoG缺乏不影响ROS解毒酶的表达,也不影响电子传输链复合物的表达和氧气消耗率。添加Micropeplide Humerin至Neogog缺陷细胞恢复Akt磷酸化和增殖,而不降低ROS水平。因此,我们的结果表明,通过对ROS和Humanin可以恢复细胞缺乏细胞中的细胞分裂并抵消ROS对AKT磷酸化对AKT磷酸化的影响来说,engoG对细胞增殖是重要的。

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