Asami Danny K, McDonald Roger B, Hagopian Kevork, Horwitz Barbara A, Warman David, Hsiao Aileen, Warden Craig, Ramsey Jon J
Department of Nutrition, University of California, 1 Shields Avenue, Davis, CA 95616, USA.
Exp Gerontol. 2008 Dec;43(12):1069-76. doi: 10.1016/j.exger.2008.09.010. Epub 2008 Sep 30.
Mitochondrial proton leak may modulate reactive oxygen species (ROS) production and play a role in aging. The purpose of this study was to determine proton leak across the life span in skeletal mitochondria from calorie-restricted and UCP2/3 overexpressing mice. Proton leak in isolated mitochondria and markers of oxidative stress in whole tissue were measured in female C57BL/6J mice fed ad-libitum (WT-Control) or a 30% calorie-restricted (WT-CR) diet, and in mice overexpressing UCP2 and UCP3 (Positive-TG), their non-overexpressing littermates (Negative-TG) and UCP3 knockout mice (UCP3KO). Proton leak in WT-CR mice was lower than that of control mice at 8 and 26 months of age. The Positive-TG mice had greater proton leak than the Negative-TG and UCP3KO mice at 8 months of age, but this difference disappeared by 19 and 26 months. Lipid peroxidation was generally lower in WT-CR vs. WT-Control mice and UCP3KO mice had greater concentrations of T-BARS (thiobarbituric acid reactive substances, a measure of lipid peroxidation) than did Positive-TG and Negative-TG. The results of this study indicate that sustained increases in muscle mitochondrial proton leak are not responsible for alterations in life span with calorie restriction or UCP3 overexpression in mice. However, UCP3 may contribute to the actions of CR through mechanisms distinct from increasing basal proton leak.
线粒体质子泄漏可能调节活性氧(ROS)的产生并在衰老过程中发挥作用。本研究的目的是确定热量限制和UCP2/3过表达小鼠骨骼肌线粒体在整个生命周期中的质子泄漏情况。在自由摄食(野生型对照)或30%热量限制(野生型CR)饮食的雌性C57BL/6J小鼠中,以及在过表达UCP2和UCP3的小鼠(阳性转基因)、其未过表达的同窝小鼠(阴性转基因)和UCP3基因敲除小鼠(UCP3KO)中,测量了分离线粒体中的质子泄漏和全组织氧化应激标志物。野生型CR小鼠在8个月和26个月大时的质子泄漏低于对照小鼠。阳性转基因小鼠在8个月大时的质子泄漏比阴性转基因和UCP3KO小鼠更大,但这种差异在19个月和26个月时消失。与野生型对照小鼠相比,野生型CR小鼠的脂质过氧化通常较低,并且UCP3KO小鼠的硫代巴比妥酸反应性物质(T-BARS,脂质过氧化的一种测量指标)浓度高于阳性转基因和阴性转基因小鼠。本研究结果表明,小鼠肌肉线粒体质子泄漏的持续增加与热量限制或UCP3过表达导致的寿命改变无关。然而,UCP3可能通过不同于增加基础质子泄漏的机制促进热量限制的作用。