Washington, Wyoming, Alaska, Montana and Idaho, Medical Education Program, Washington State University, Spokane, Washington, United States of America.
PLoS One. 2012;7(2):e30651. doi: 10.1371/journal.pone.0030651. Epub 2012 Feb 13.
Sleep is greatly affected by changes in metabolic state. A possible mechanism where energy-sensing and sleep-regulatory functions overlap is related to lipid metabolism. Fatty acid synthase (FAS) plays a central role in lipid metabolism as a key enzyme in the formation of long-chain fatty acids. We studied the effects of systemic administration of C75, an inhibitor of FAS, on sleep, behavioral activity and metabolic parameters in mice. Since the effects of C75 on feeding and metabolism are the opposite of ghrelin's and C75 suppresses ghrelin production, we also tested the role of ghrelin signaling in the actions of C75 by using ghrelin receptor knockout (KO) mice. After a transient increase in wakefulness, C75 elicited dose-dependent and long lasting inhibition of REMS, motor activity and feeding. Simultaneously, C75 significantly attenuated slow-wave activity of the electroencephalogram. Energy expenditure, body temperature and respiratory exchange ratio were suppressed. The diurnal rhythm of feeding was completely abolished by C75. There was significant correlation between the anorectic effects, the decrease in motor activity and the diminished energy expenditure after C75 injection. We found no significant difference between wild-type and ghrelin receptor KO mice in their sleep and metabolic responses to C75. The effects of C75 resemble to what was previously reported in association with visceral illness. Our findings suggest that sleep and metabolic effects of C75 in mice are independent of the ghrelin system and may be due to its aversive actions in mice.
睡眠受到代谢状态变化的极大影响。能量感应和睡眠调节功能重叠的一个可能机制与脂代谢有关。脂肪酸合酶(FAS)作为长链脂肪酸形成的关键酶,在脂代谢中起着核心作用。我们研究了全身性给予 FAS 抑制剂 C75 对小鼠睡眠、行为活动和代谢参数的影响。由于 C75 对摄食和代谢的影响与胃饥饿素相反,并且 C75 抑制胃饥饿素的产生,我们还通过使用胃饥饿素受体敲除(KO)小鼠测试了胃饥饿素信号在 C75 作用中的作用。在短暂增加觉醒后,C75 引起剂量依赖性和持久的 REM 睡眠、运动活动和摄食抑制。同时,C75 显著减弱了脑电图的慢波活动。能量消耗、体温和呼吸交换率均受到抑制。C75 完全消除了摄食的昼夜节律。C75 注射后,厌食作用、运动活动减少和能量消耗减少之间存在显著相关性。我们发现野生型和胃饥饿素受体 KO 小鼠在对 C75 的睡眠和代谢反应方面没有显著差异。C75 的作用类似于以前与内脏疾病相关的报道。我们的研究结果表明,C75 在小鼠中的睡眠和代谢作用与胃饥饿素系统无关,可能是由于其在小鼠中的厌恶作用所致。