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首页> 外文期刊>Cell metabolism >Reduced TOR signaling extends chronological life span via increased respiration and upregulation of mitochondrial gene expression.
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Reduced TOR signaling extends chronological life span via increased respiration and upregulation of mitochondrial gene expression.

机译:减少的TOR信号传导通过增加呼吸作用和线粒体基因表达的上调来延长时间寿命。

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摘要

The relationships between mitochondrial respiration, reactive oxygen species (ROS), and life span are complex and remain controversial. Inhibition of the target of rapamycin (TOR) signaling pathway extends life span in several model organisms. We show here that deletion of the TOR1 gene extends chronological life span in Saccharomyces cerevisiae, primarily by increasing mitochondrial respiration via enhanced translation of mtDNA-encoded oxidative phosphorylation complex subunits. Unlike previously reported pathways regulating chronological life span, we demonstrate that deletion of TOR1 delays aging independently of the antioxidant gene SOD2. Furthermore, wild-type and tor1 null strains differ in life span only when respiration competent and grown in normoxia in the presence of glucose. We propose that inhibition of TOR signaling causes derepression of respiration during growth in glucose and that the subsequent increase in mitochondrial oxygen consumption limits intracellular oxygen and ROS-mediated damage during glycolytic growth, leading to lower cellular ROS and extension of chronological life span.
机译:线粒体呼吸,活性氧(ROS)和寿命之间的关系很复杂,仍然存在争议。雷帕霉素(TOR)信号转导靶标的抑制作用延长了几种模型生物的寿命。我们在这里显示TOR1基因的删除主要通过增加线粒体呼吸,通过增强mtDNA编码的氧化磷酸化复杂亚基的翻译来延长酿酒酵母的时间寿命。与以前报道的调节时间顺序的途径不同,我们证明了TOR1的缺失独立于抗氧化剂基因SOD2延迟了衰老。此外,仅当具有呼吸能力并在葡萄糖存在下常氧下生长时,野生型和tor1无效菌株的寿命不同。我们建议抑制TOR信号导致葡萄糖生长过程中呼吸抑制,随后线粒体耗氧量的增加限制了糖酵解生长过程中细胞内的氧气和ROS介导的损伤,从而导致细胞ROS降低和时间寿命的延长。

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