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褪黑素可抵御线粒体DNA常见缺失所增强的线粒体氧化应激及细胞凋亡。

Melatonin protects against common deletion of mitochondrial DNA-augmented mitochondrial oxidative stress and apoptosis.

作者信息

Jou Mei-Jie, Peng Tsung-I, Yu Pai-Zu, Jou Shuo-Bin, Reiter Russel J, Chen Jin-Yi, Wu Hong-Yueh, Chen Chih-Chun, Hsu Lee-Fen

机构信息

Department of Physiology and Pharmacology, School of Medicine, College of Medicine, Chang Gung University, Tao-Yuan, and Department of Neurology, Kee-Lung Medical Center, Chang Gung Memorial Hospital, Taiwan.

出版信息

J Pineal Res. 2007 Nov;43(4):389-403. doi: 10.1111/j.1600-079X.2007.00490.x.

Abstract

Defected mitochondrial respiratory chain (RC), in addition to causing a severe ATP deficiency, often augments reactive oxygen species (ROS) generation in mitochondria (mROS) which enhances pathological conditions and diseases. Previously, we demonstrated a potent endogenously RC defect-augmented mROS associated dose-dependently with a commonly seen large-scale deletion of 4977 base pairs of mitochondrial DNA (mtDNA), i.e. the common deletion (CD). As current treatments for CD-associated diseases are rather supplementary and ineffective, we investigated whether melatonin, a potential mitochondrial protector, provides beneficial protection for CD-augmented mitochondrial oxidative stress and apoptosis particularly upon the induction of a secondary oxidative stress. Detailed mechanistic investigations were performed by using laser scanning dual fluorescence imaging microscopy to provide precise spatial and temporal resolution of mitochondrial events at single cell level. We demonstrate, for the first time, that melatonin significantly prevents CD-augmented mROS formation under basal conditions as well as at early time-points upon secondary oxidative stress induced by H2O2 exposure. Thus, melatonin prevents mROS-mediated depolarization of mitochondrial membrane potential (DeltaPsim) and subsequent opening of the mitochondrial permeability transition pore (MPTP) and cytochrome c release. Moreover, melatonin prevents depletion of cardiolipin which appears to be crucial for postponing later MPTP opening, disruption of the mitochondrial membrane and apoptosis. Finally, the protection provided by melatonin is superior to those caused by the suppression of mitochondrial Ca2+ regulators including the mitochondrial Na+-Ca2) exchanger, the MPTP, and the mitochondrial Ca2+ uniporter and by antioxidants including vitamin E and mitochondria-targeted coenzyme Q, MitoQ. As RC defect-augmented endogenous mitochondrial oxidative stress is centrally involved in a variety of pathological conditions and diseases, melatonin thus may serve as a therapeutic drug to benefit many clinical conditions that involve malfunction of the mitochondria.

摘要

缺陷线粒体呼吸链(RC)除了会导致严重的ATP缺乏外,还常常会增加线粒体中活性氧(ROS)的生成(mROS),从而加剧病理状况和疾病。此前,我们证明了一种内源性RC缺陷导致的mROS增加,其与常见的线粒体DNA(mtDNA)4977个碱基对的大规模缺失呈剂量依赖性相关,即常见缺失(CD)。由于目前针对与CD相关疾病的治疗方法相当辅助且无效,我们研究了褪黑素这种潜在的线粒体保护剂,是否能为CD增强的线粒体氧化应激和凋亡提供有益的保护,特别是在诱导继发性氧化应激时。通过使用激光扫描双荧光成像显微镜进行详细的机制研究,以在单细胞水平上提供线粒体事件精确的空间和时间分辨率。我们首次证明,褪黑素在基础条件下以及在H2O2暴露诱导的继发性氧化应激早期,能显著预防CD增强的mROS形成。因此,褪黑素可防止mROS介导的线粒体膜电位(ΔΨm)去极化以及随后线粒体通透性转换孔(MPTP)的开放和细胞色素c的释放。此外,褪黑素可防止心磷脂的消耗,这似乎对推迟后期MPTP的开放、线粒体膜的破坏和凋亡至关重要。最后,褪黑素提供的保护作用优于抑制线粒体Ca2+调节剂(包括线粒体Na+-Ca2+交换体、MPTP和线粒体Ca2+单向转运体)以及抗氧化剂(包括维生素E和线粒体靶向辅酶Q、MitoQ)所产生的保护作用。由于RC缺陷增强的内源性线粒体氧化应激在多种病理状况和疾病中起核心作用,因此褪黑素可能作为一种治疗药物,使许多涉及线粒体功能障碍的临床状况受益。

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