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首页> 外文期刊>Journal of Molecular Biology >Metabolic Regulation of the Ultradian Oscillator Hes1 by Reactive Oxygen Species
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Metabolic Regulation of the Ultradian Oscillator Hes1 by Reactive Oxygen Species

机译:活性氧对超摆动子Hes1的代谢调控。

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Ultradian oscillators are cyclically expressed genes with a period of less than 24 h, found in the major signalling pathways. The Notch effector hairy and enhancer of split Hes genes are ultradian oscillators. The physiological signals that synchronise and entrain Hes oscillators remain poorly understood. We investigated whether cellular metabolism modulates Hes1 cyclic expression. We demonstrated that, in mouse myoblasts (C2C12), Hes1 oscillation depends on reactive oxygen species (ROS), which are generated by the mitochondria electron transport chain and by NADPH oxidases NOXs. In vitro, the regulation of Hes1 by ROS occurs via the calcium-mediated signalling. The modulation of Hes1 by ROS was relevant in vivo, since perturbing ROS homeostasis was sufficient to alter Medaka (Oryzias latipes) somitogenesis, a process that is dependent on Hes1 ultradian oscillation during embryo development. Moreover, in a Medaka model for human microphthalmia with linear skin lesions syndrome, in which mitochondrial ROS homeostasis was impaired, we documented important somitogenesis defects and the deregulation of Hes homologues genes involved in somitogenesis. Notably, both molecular and developmental defects were rescued by antioxidant treatments. Our studies provide the first evidence of a coupling between cellular redox metabolism and an ultradian biological oscillator with important pathophysiological implication for somitogenesis. (C) 2015 The Authors. Published by Elsevier Ltd. This is an open access article under the CC BY license (http://creativecommons.org/licenses/by/4.0/).
机译:Ultradian振荡器是周期性表达的基因,周期不到24小时,在主要的信号传导途径中发现。 Notch效应毛发和Hes分裂基因的增强子是Ultradian振荡器。同步和携带Hes振荡器的生理信号仍然知之甚少。我们调查了细胞代谢是否调节Hes1循环表达。我们证明,在小鼠成肌细胞(C2C12)中,Hes1振荡取决于线粒体电子传输链和NADPH氧化酶NOX生成的活性氧(ROS)。在体外,ROS通过钙介导的信号传导调控Hes1。 ROS对Hes1的调节在体内具有重要意义,因为扰动ROS稳态足以改变Medaka(Oryzias latipes)的体细胞生成,该过程依赖于胚胎发育过程中Hes1超电子体的振荡。此外,在具有线性皮肤损伤综合征的人小眼症的Medaka模型中,线粒体ROS稳态受到损害,我们记录了重要的体发生缺陷和参与体发生的Hes同源基因的失调。值得注意的是,分子和发育缺陷都通过抗氧化剂处理得以挽救。我们的研究提供了细胞氧化还原代谢与超生物振荡子之间耦合的第一个证据,对生体发育具有重要的病理生理意义。 (C)2015作者。由Elsevier Ltd.发行。这是CC BY许可下的开放访问文章(http://creativecommons.org/licenses/by/4.0/)。

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