Waddington Lamont E, Harbour V L, Barry-Shaw J, Renteria Diaz L, Robinson B, Stewart J, Amir S
Center for Studies in Behavioral Neurobiology, Department of Psychology, Concordia University, SP-244, Montréal, Quebéc, Canada.
Neuroscience. 2007 Jan 19;144(2):402-11. doi: 10.1016/j.neuroscience.2006.09.027. Epub 2006 Oct 24.
Restricted feeding schedules (RF) in which daily access to food is limited to a few hours each day can entrain the rhythms of expression of circadian clock genes in the brain and periphery in rodents. The critical factors mediating the effect of RF on rhythms of clock gene expression are unknown. Previously, we demonstrated that daytime RF shifts the phase of expression of the clock protein, Period2 (PER2) in the oval nucleus of the bed nucleus of the stria terminalis in rats kept on a 12-h light/dark cycle, and restored the rhythm of PER2 expression in rats housed in constant light. We now report that RF also modifies the rhythms of PER2 expression in the central and basolateral nuclei of the amygdala and in the dentate gyrus, such that all three areas become synchronized, peaking 12 h after the time of food presentation. Daily limited access to sucrose or saccharine in freely fed rats or scheduled access to saline in sodium-deprived rats had no effect on these PER2 rhythms. Thus, it would appear that the rhythms of PER2 in limbic forebrain structures are sensitive to signals that arise from the alleviation of a negative metabolic state associated with scheduled feeding and that access to rewarding substances in the absence of food deprivation or metabolic challenges, per se, is not sufficient to alter the rhythms of PER2 expression in these regions.
限制进食时间表(RF),即每天获取食物的时间被限制在几个小时以内,这种方式能够调节啮齿动物大脑和外周生物钟基因的表达节律。介导RF对生物钟基因表达节律产生影响的关键因素尚不清楚。此前,我们证明,在12小时光照/黑暗周期饲养的大鼠中,白天的RF会使终纹床核椭圆核中生物钟蛋白Period2(PER2)的表达相位发生改变,并恢复持续光照环境下饲养的大鼠中PER2表达的节律。我们现在报告,RF还会改变杏仁核中央核和基底外侧核以及齿状回中PER2的表达节律,使得这三个区域的节律同步,在喂食时间后12小时达到峰值。在自由进食的大鼠中,每天限制蔗糖或糖精的摄入,或者在缺钠大鼠中定时给予生理盐水,对这些PER2节律没有影响。因此,边缘前脑结构中PER2的节律似乎对与定时喂食相关的负代谢状态缓解所产生的信号敏感,并且在没有食物剥夺或代谢挑战的情况下获取奖励物质本身不足以改变这些区域中PER2的表达节律。