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解偶联蛋白与睡眠剥夺

Uncoupling proteins and sleep deprivation.

作者信息

Cirelli C, Tononi G

机构信息

Department of Psychiatry, University of Wisconsin-Madison, 6001 Research Park Blvd, Madison WI 53719, USA.

出版信息

Arch Ital Biol. 2004 Jul;142(4):541-9.

Abstract

In both humans and animals sleep deprivation (SD) produces an increase in food intake and in energy expenditure (EE). The increase in EE is a core element of the SD syndrome and, in rats, is negatively correlated with survival rate. However, the mechanisms involved are not understood. A large component of resting EE is accounted for by the mitochondrial proton leak, which is mediated by uncoupling proteins (UCPs). We measured UCP2, UCP3, and UCP5 mRNA levels in rats during the spontaneous sleep/waking cycle and after short (8 hours) and long (7 days) SD. During spontaneous sleep and waking there was no change in the level of mitochondrial uncoupling as measured by UCPs expression, either in the brain or in peripheral tissues. During SD, by contrast, UCP3 expression in skeletal muscle was elevated, but the increase was similar, compared to sleep, after both short-term and long-term SD. UCP2 expression, on the other hand, was strongly increased in the liver and skeletal muscle of long-term sleep deprived animals and much less so, or not at all, in yoked controls or in rats that lost only 8 hours of sleep. Since the skeletal muscle is the largest tissue in the body, an elevated muscular expression of UCP2 is likely to affect the overall resting EE and may thus contribute to its increase after SD.

摘要

在人类和动物中,睡眠剥夺(SD)都会导致食物摄入量和能量消耗(EE)增加。能量消耗增加是睡眠剥夺综合征的一个核心要素,在大鼠中,它与存活率呈负相关。然而,其中涉及的机制尚不清楚。静息能量消耗的很大一部分是由线粒体质子泄漏引起的,而线粒体质子泄漏是由解偶联蛋白(UCPs)介导的。我们测量了大鼠在自然睡眠/清醒周期以及短期(8小时)和长期(7天)睡眠剥夺后的UCP2、UCP3和UCP5 mRNA水平。在自然睡眠和清醒期间,无论是在大脑还是外周组织中,通过UCPs表达测量的线粒体解偶联水平都没有变化。相比之下,在睡眠剥夺期间,骨骼肌中的UCP3表达升高,但与睡眠相比,短期和长期睡眠剥夺后的增加相似。另一方面,长期睡眠剥夺动物的肝脏和骨骼肌中UCP2表达强烈增加,而在配对对照组或仅睡眠剥夺8小时的大鼠中,UCP2表达增加较少或根本没有增加。由于骨骼肌是身体中最大的组织,UCP2在肌肉中的表达升高可能会影响整体静息能量消耗,因此可能导致睡眠剥夺后能量消耗增加。

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