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首页> 外文期刊>Molecules and cells >Caloric Restriction-Induced Extension of Chronological Lifespan Requires Intact Respiration in Budding Yeast
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Caloric Restriction-Induced Extension of Chronological Lifespan Requires Intact Respiration in Budding Yeast

机译:热量限制诱导的时间寿命延长要求芽酵母中需要完整的呼吸

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Caloric restriction (CR) has been shown to extend lifespan and prevent cellular senescence in various species ranging from yeast to humans. Many effects of CR may contribute to extend lifespan. Specifically, CR prevents oxidative damage from reactive oxygen species (ROS) by enhancing mitochondrial function. In this study, we characterized 33 single electron transport chain (ETC) gene-deletion strains to identify CR-induced chronological lifespan (CLS) extension mechanisms. Interestingly, defects in 17 of these 33 ETC gene-deleted strains showed loss of both respiratory function and CR-induced CLS extension. On the contrary, the other 16 respiration-capable mutants showed increased CLS upon CR along with increased mitochondrial membrane potential (MMP) and intracellular adenosine triphosphate (ATP) levels, with decreased mitochondrial superoxide generation. We measured the same parameters in the 17 non-respiratory mutants upon CR. CR simultaneously increased MMP and mitochondrial superoxide generation without altering intracellular ATP levels. In conclusion, respiration is essential for CLS extension by CR and is important for balancing MMP, ROS, and ATP levels.
机译:已显示热量限制(CR)可以延长寿命,并防止从酵母到人类的各种物种的细胞衰老。 CR的许多作用可能有助于延长使用寿命。具体而言,CR通过增强线粒体功能来防止活性氧(ROS)引起的氧化损伤。在这项研究中,我们表征了33个单电子传输链(ETC)基因缺失菌株,以鉴定CR诱导的时间寿命(CLS)延伸机制。有趣的是,在这33个ETC基因缺失菌株中,有17个缺陷显示呼吸功能丧失和CR诱导的CLS延伸。相反,其他16个具有呼吸功能的突变体显示CR后CLS增加,线粒体膜电位(MMP)和细胞内三磷酸腺苷(ATP)水平升高,线粒体超氧化物生成减少。我们在CR后在17个非呼吸突变体中测量了相同的参数。 CR同时增加MMP和线粒体超氧化物的产生,而不会改变细胞内ATP的水平。总之,呼吸对于通过CR延长CLS至关重要,对于平衡MMP,ROS和ATP水平也很重要。

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