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Balancing mitochondrial redox signaling: a key point in metabolic regulation.

机译:平衡线粒体氧化还原信号:代谢调节的关键点。

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摘要

Mitochondrial reactive oxygen species (mROS) have emerged as signaling molecules in physiology primarily as a result of studies of uncoupling mechanisms in mitochondrial respiration. The discovery that this mechanism negatively regulates mROS generation in many cell types has drawn the attention of the scientific community to the pathological consequences of excess mROS production. From reports of the energetic fluxes in cells grown under normal conditions, the hypothesis that mROS are an integrated physiological signal of the metabolic status of the cell has emerged. Here, we consider recent studies that support this point of view in two key nutrient sensors of the body, beta cells and the hypothalamus, which are the main coordinators of endocrine and nervous controls of energy metabolism and adipose tissue, which is of paramount importance in controlling body weight and, therefore, the development of obesity and type 2 diabetes. In this context, finely balanced mROS production may be at the core of proper metabolic maintenance, and unbalanced mROS production, which is largely documented, might be an important trigger of metabolic disorders.
机译:线粒体活性氧(mROS)在生理学中已作为信号分子出现,这主要是由于研究了线粒体呼吸的解偶联机制。该机制负调控许多细胞类型中mROS生成的发现引起了科学界对过量mROS产生的病理后果的关注。根据在正常条件下生长的细胞中的能量通量的报告,出现了关于mROS是细胞代谢状态的综合生理信号的假说。在这里,我们考虑了最近的研究,在人体的两个关键营养传感器β细胞和下丘脑中支持了这一观点,它们是能量代谢和脂肪组织的内分泌和神经控制的主要协调者,在人体中至关重要控制体重,从而控制肥胖和2型糖尿病的发展。在这种情况下,mROS产生的细微平衡可能是维持适当的代谢的核心,而大量记载的mROS产生不平衡可能是代谢紊乱的重要诱因。

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