首页> 外文OA文献 >In vivo imaging of the central and peripheral effects of sleep deprivation and suprachiasmatic nuclei lesion on PERIOD-2 protein in mice.
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In vivo imaging of the central and peripheral effects of sleep deprivation and suprachiasmatic nuclei lesion on PERIOD-2 protein in mice.

机译:体内剥夺睡眠剥夺和视交叉上核病变对小鼠PERIOD-2蛋白的中枢和外围作用的成像。

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摘要

STUDY OBJECTIVES: That sleep deprivation increases the brain expression of various clock genes has been well documented. Based on these and other findings we hypothesized that clock genes not only underlie circadian rhythm generation but are also implicated in sleep homeostasis. However, long time lags have been reported between the changes in the clock gene messenger RNA levels and their encoded proteins. It is therefore crucial to establish whether also protein levels increase within the time frame known to activate a homeostatic sleep response. We report on the central and peripheral effects of sleep deprivation on PERIOD-2 (PER2) protein both in intact and suprachiasmatic nuclei-lesioned mice.DESIGN: In vivo and in situ PER2 imaging during baseline, sleep deprivation, and recovery.SETTINGS: Mouse sleep-recording facility.PARTICIPANTS: Per2::Luciferase knock-in mice.INTERVENTIONS: N/A.MEASUREMENTS AND RESULTS: Six-hour sleep deprivation increased PER2 not only in the brain but also in liver and kidney. Remarkably, the effects in the liver outlasted those observed in the brain. Within the brain the increase in PER2 concerned the cerebral cortex mainly, while leaving suprachiasmatic nuclei (SCN) levels unaffected. Against expectation, sleep deprivation did not increase PER2 in the brain of arrhythmic SCN-lesioned mice because of higher PER2 levels in baseline. In contrast, liver PER2 levels did increase in these mice similar to the sham and partially lesioned controls.CONCLUSIONS: Our results stress the importance of considering both sleep-wake dependent and circadian processes when quantifying clock-gene levels. Because sleep deprivation alters PERIOD-2 in the brain as well as in the periphery, it is tempting to speculate that clock genes constitute a common pathway mediating the shared and well-known adverse effects of both chronic sleep loss and disrupted circadian rhythmicity on metabolic health.
机译:研究目的:睡眠不足会增加大脑各种时钟基因的表达。基于这些发现和其他发现,我们推测时钟基因不仅是昼夜节律的基础,而且还与睡眠动态平衡有关。但是,已经报道了时钟基因信使RNA水平的变化与其编码的蛋白之间存在长时间的滞后。因此,至关重要的是要确定蛋白质水平是否也在已知激活体内稳态睡眠反应的时间框架内增加。我们报告了睡眠剥夺对完整和上裂性核损伤小鼠中PERIOD-2(PER2)蛋白的中枢和外围影响。设计:基线,睡眠剥夺和恢复期间的体内和原位PER2成像。参与者:Per2 ::荧光素酶敲入小鼠。干预:不适用。措施和结果:六小时的睡眠剥夺不仅增加了脑内的PER2,而且还增加了肝脏和肾脏的PER2。值得注意的是,在肝脏中的作用要比在大脑中观察到的要持久。在大脑内,PER2的增加主要与大脑皮层有关,而上方视交叉核(SCN)水平不受影响。出乎意料的是,睡眠剥夺并没有增加心律不齐的SCN病变小鼠的脑内PER2,因为基线的PER2水平较高。相比之下,与假手术和部分病变对照组相比,这些小鼠的肝脏PER2水平确实升高。结论:我们的结果强调了在定量时钟基因水平时必须同时考虑睡眠唤醒和昼夜节律过程的重要性。由于睡眠剥夺会改变大脑和周围区域的PERIOD-2,因此很容易推测时钟基因是介导慢性睡眠丧失和昼夜节律紊乱对代谢健康的共同和众所周知的不良影响的共同途径。 。

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