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Phase Differences in Expression of Circadian Clock Genes in the Central Nucleus of the Amygdala, Dentate Gyrus, and Suprachiasmatic Nucleus in the Rat

机译:大鼠杏仁核,齿状回和超视交叉核中昼夜节律基因表达的相位差

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摘要

We performed a high temporal resolution analysis of the transcript level of two core clock genes, Period2 (Per2) and Bmal1,\udand a clock output gene, Dbp, in the suprachiasmatic nucleus (SCN), the master circadian clock, and in two forebrain\udregions, the lateral part of the central nucleus of the amygdala (CEAl), and dentate gyrus (DG), in rats. These regions, as we\udhave shown previously, exhibit opposite rhythms in expression of the core clock protein, PERIOD2 (PER2). We found that the\udexpression of Per2, Bmal1 and Dbp follow a diurnal rhythm in all three regions but the phase and amplitude of the rhythms\udof each gene vary across regions, revealing important regional differences in temporal dynamics underlying local daily\udrhythm generation in the mammalian forebrain. These findings underscore the complex temporal organization of\udsubordinate circadian oscillators in the forebrain and raise interesting questions about the functional connection of these\udoscillators with the master SCN clock.
机译:我们对超视交叉核(SCN),主生理节律和两个前脑中的两个核心时钟基因Period2(Per2)和Bmal1 \ ud和一个时钟输出基因Dbp的转录水平进行了高时间分辨率分析。大鼠的杏仁核中心区(CEA1)和齿状回(DG)的\ udregions。如我们先前所示,这些区域在核心时钟蛋白PERIOD2(PER2)的表达中呈现相反的节奏。我们发现,Per2,Bmal1和Dbp的\ deexpression在所有三个区域中都遵循昼夜节律,但是每个基因的节律\ ud的相位和幅度在各个区域中都不同,从而揭示了当地每日\ udrhythmth产生的时间动态的重要区域差异哺乳动物的前脑。这些发现强调了前脑\下属昼夜节律振荡器的复杂时间组织,并提出了有关这些\ u下振荡器与主SCN时钟的功能连接的有趣问题。

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