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昼行性草鼠(非洲草鼠)杏仁核和终纹床核中PER1蛋白表达的节律

Rhythms in expression of PER1 protein in the amygdala and bed nucleus of the stria terminalis of the diurnal grass rat (Arvicanthis niloticus).

作者信息

Ramanathan Chidambaram, Smale Laura, Nunez Antonio A

机构信息

Department of Psychology, Michigan State University, East Lansing, MI 48824, USA.

出版信息

Neurosci Lett. 2008 Aug 15;441(1):86-9. doi: 10.1016/j.neulet.2008.06.019. Epub 2008 Jun 13.

Abstract

In the diurnal rodent Arvicanthis niloticus (grass rats) the pattern of expression of the clock genes and their proteins in the suprachiasmatic nucleus (SCN) is very similar to that seen in nocturnal rodents. Rhythms in clock gene expression have been also documented in several forebrain regions outside the SCN in nocturnal Ratus norvegicus (lab rats). To investigate the neural basis for differences in the circadian systems of diurnal and nocturnal mammals, we examined PER1 expression in the oval nucleus of the bed nucleus of the stria terminalis (BNST-OV), and in the basolateral (BLA) and the central (CEA) amygdala of male grass rats kept in a 12:12 light/dark cycle. In the BNST-OV, peak levels of PER1 expression were seen early in the light phase of the cycle, 12h out of phase with what has been reported for nocturnal lab rats. In the BLA the pattern of PER1 expression featured sustained high levels during the day and low levels at night. PER1 expression in the CEA was also at its highest early in the light phase, but the effect of sampling time was not statistically significant (p<0.06). The results are consistent with the hypothesis that differences between nocturnal and diurnal species are due to differences in neural systems downstream from the SCN.

摘要

在昼行性啮齿动物尼罗多齿鼠(草鼠)中,视交叉上核(SCN)中时钟基因及其蛋白质的表达模式与夜行性啮齿动物中所见的模式非常相似。在夜行性褐家鼠(实验大鼠)的SCN以外的几个前脑区域也记录到了时钟基因表达的节律。为了研究昼行性和夜行性哺乳动物昼夜节律系统差异的神经基础,我们检测了处于12:12光/暗循环中的雄性草鼠终纹床核椭圆核(BNST-OV)、基底外侧杏仁核(BLA)和中央杏仁核(CEA)中PER1的表达。在BNST-OV中,PER1表达的峰值出现在光周期的早期,与夜行性实验大鼠所报道的情况相差12小时。在BLA中,PER1的表达模式表现为白天持续高水平、夜间低水平。CEA中PER1的表达在光周期早期也最高,但采样时间的影响无统计学意义(p<0.06)。这些结果与以下假设一致,即夜行性和昼行性物种之间的差异是由于SCN下游神经系统的差异所致。

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