Franken P, Lopez-Molina L, Marcacci L, Schibler U, Tafti M
Biochemistry and Neurophysiology Unit, Department of Psychiatry, University of Geneva, CH-1225 Chêne-Bourg, Switzerland.
J Neurosci. 2000 Jan 15;20(2):617-25. doi: 10.1523/JNEUROSCI.20-02-00617.2000.
Albumin D-binding protein (DBP) is a PAR leucine zipper transcription factor that is expressed according to a robust circadian rhythm in the suprachiasmatic nuclei, harboring the circadian master clock, and in most peripheral tissues. Mice lacking DBP display a shorter circadian period in locomotor activity and are less active. Thus, although DBP is not essential for circadian rhythm generation, it does modulate important clock outputs. We studied the role of DBP in the circadian and homeostatic aspects of sleep regulation by comparing DBP deficient mice (dbp-/-) with their isogenic controls (dbp+/+) under light-dark (LD) and constant-dark (DD) baseline conditions, as well as after sleep loss. Whereas total sleep duration was similar in both genotypes, the amplitude of the circadian modulation of sleep time, as well as the consolidation of sleep episodes, was reduced in dbp-/- under both LD and DD conditions. Quantitative EEG analysis demonstrated a marked reduction in the amplitude of the sleep-wake-dependent changes in slow-wave sleep delta power and an increase in hippocampal theta peak frequency in dbp-/- mice. The sleep deprivation-induced compensatory rebound of EEG delta power was similar in both genotypes. In contrast, the rebound in paradoxical sleep was significant in dbp+/+ mice only. It is concluded that the transcriptional regulatory protein DBP modulates circadian and homeostatic aspects of sleep regulation.
白蛋白 D 结合蛋白(DBP)是一种 PAR 亮氨酸拉链转录因子,在视交叉上核(生物钟主时钟所在部位)以及大多数外周组织中,它依据强大的昼夜节律表达。缺乏 DBP 的小鼠在运动活动中表现出较短的昼夜节律周期,且活动较少。因此,尽管 DBP 对于昼夜节律的产生并非必不可少,但它确实会调节重要的时钟输出。我们通过在明暗(LD)和持续黑暗(DD)基线条件下以及睡眠剥夺后,将 DBP 缺陷小鼠(dbp-/-)与其同基因对照(dbp+/+)进行比较,研究了 DBP 在睡眠调节的昼夜节律和稳态方面的作用。虽然两种基因型的总睡眠时间相似,但在 LD 和 DD 条件下,dbp-/-小鼠睡眠时间的昼夜调节幅度以及睡眠片段的巩固程度均降低。定量脑电图分析表明,dbp-/-小鼠中慢波睡眠δ功率的睡眠-觉醒依赖性变化幅度显著降低,海马θ峰频率增加。两种基因型中睡眠剥夺诱导的脑电图δ功率代偿性反弹相似。相比之下,仅 dbp+/+小鼠出现快速眼动睡眠的显著反弹。结论是转录调节蛋白 DBP 调节睡眠调节的昼夜节律和稳态方面。