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New yeast models for studying mitochondrial morphology as affected by oxidative stress and other factors

机译:研究线粒体形态的新酵母模型,受氧化应激和其他因素的影响

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The overwhelming majority of investigations on mitochondrial morphology were performed using S. cerevisiae. In this study we showed the benefits of applying new model organisms including petite negative D. magnusii and Y. lipolytica yeasts for visualization of mitochondrial fragmentation. Normally giant D. magnusii cells and filament-like Y. lipolytica cells contain the highly structured mitochondrial reticulum. Oxidative stress mediated by tert-butyl hydroperoxide triggered mitochondrial fragmentation in yeasts. In D. magnusii mitochondrial fragmentation was also induced by impairing the oxidative phosphorylation system. Higher prooxidant concentrations caused cell death. Cationic lipophilic antioxidant SkQl acted downstream of the excessive ROS production and prevented partially or almost totally oxidative stress and related mitochondrial fragmentation and cell death. We believe that utility of D. magnusii and Y. lipolytica yeasts as a "living test tube" would be useful for providing new information concerning the interplay between mitochondrial dynamics and mitochondrial dysfunction, cell cycle, aging, mitophagy and cell death. (C) 2017 Elsevier Inc. All rights reserved.
机译:使用S.酿酒酵母进行了对线粒体形态的绝大多数研究。在这项研究中,我们展示了应用新模型生物的益处,包括娇小阴性D. Magnusii和Y. Lipolytica酵母,用于可视化线粒体碎片化。通常巨大的D. Magnusii细胞和丝状Y. Lipolytica细胞含有高度结构化的线粒体网。由叔丁基氢氧化氧化酯介导的氧化应激在酵母中引发线粒体破碎化。在D.通过损害氧化磷酸化系统,还诱导Magnusii线粒体碎片。较高的过约浓度导致细胞死亡。阳离子亲脂性抗氧化剂SKQL在过量的ROS生产下游,并预防部分或几乎完全氧化应激和相关线粒体破碎和细胞死亡。我们认为,D. Magnusii和Y. Lipolytica酵母作为“活试管”的效用可用于提供关于线粒体动力学和线粒体功能障碍,细胞周期,老化,MITOCHAGY和细胞死亡的相互作用的新信息。 (c)2017年Elsevier Inc.保留所有权利。

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