Department of Respiratory and Critical Care Medicine, Peking University First Hospital, Beijing 100034, China, Center for Sleep and Circadian Neurobiology, Department of Medicine, Institute for Diabetes, Obesity and Metabolism, and Department of Physiology, Perelman School of Medicine, University of Pennsylvania, Philadelphia, Pennsylvania 19104.
J Neurosci. 2014 Mar 19;34(12):4418-31. doi: 10.1523/JNEUROSCI.5025-12.2014.
Modern society enables a shortening of sleep times, yet long-term consequences of extended wakefulness on the brain are largely unknown. Essential for optimal alertness, locus ceruleus neurons (LCns) are metabolically active neurons that fire at increased rates across sustained wakefulness. We hypothesized that wakefulness is a metabolic stressor to LCns and that, with extended wakefulness, adaptive mitochondrial metabolic responses fail and injury ensues. The nicotinamide adenine dinucleotide-dependent deacetylase sirtuin type 3 (SirT3) coordinates mitochondrial energy production and redox homeostasis. We find that brief wakefulness upregulates SirT3 and antioxidants in LCns, protecting metabolic homeostasis. Strikingly, mice lacking SirT3 lose the adaptive antioxidant response and incur oxidative injury in LCns across brief wakefulness. When wakefulness is extended for longer durations in wild-type mice, SirT3 protein declines in LCns, while oxidative stress and acetylation of mitochondrial proteins, including electron transport chain complex I proteins, increase. In parallel with metabolic dyshomeostasis, apoptosis is activated and LCns are lost. This work identifies mitochondrial stress in LCns upon wakefulness, highlights an essential role for SirT3 activation in maintaining metabolic homeostasis in LCns across wakefulness, and demonstrates that extended wakefulness results in reduced SirT3 activity and, ultimately, degeneration of LCns.
现代社会使得睡眠时间缩短,但长期延长清醒时间对大脑的影响在很大程度上尚不清楚。蓝斑核神经元(LCns)是代谢活跃的神经元,在持续清醒时以更高的频率放电,对于最佳警觉性至关重要。我们假设清醒是 LCns 的代谢应激源,随着清醒时间的延长,适应性线粒体代谢反应失败,继而导致损伤。烟酰胺腺嘌呤二核苷酸依赖性去乙酰化酶 Sirtuin 类型 3(SirT3)协调线粒体能量产生和氧化还原稳态。我们发现短暂的清醒会上调 LCns 中的 SirT3 和抗氧化剂,从而保护代谢稳态。引人注目的是,缺乏 SirT3 的小鼠在短暂的清醒过程中会失去适应性抗氧化反应,并在 LCns 中产生氧化损伤。当野生型小鼠的清醒时间延长时,LCns 中的 SirT3 蛋白下降,而氧化应激和线粒体蛋白(包括电子传递链复合物 I 蛋白)的乙酰化增加。与代谢失调平行的是,细胞凋亡被激活,LCns 丢失。这项工作确定了 LCns 在清醒时的线粒体应激,强调了 SirT3 激活在维持 LCns 清醒时代谢稳态中的重要作用,并表明延长清醒时间会导致 SirT3 活性降低,最终导致 LCns 退化。