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CS小鼠的行为节律分裂与视交叉上核以外的时钟基因表达有关。

Behavioural rhythm splitting in the CS mouse is related to clock gene expression outside the suprachiasmatic nucleus.

作者信息

Abe H, Honma S, Namihira M, Masubuchi S, Honma K

机构信息

Department of Physiology, Division of Physiological Science, Hokkaido University Graduate School of Medicine, Sapporo 060-8638, Japan.

出版信息

Eur J Neurosci. 2001 Oct;14(7):1121-8. doi: 10.1046/j.0953-816x.2001.01732.x.

Abstract

CS mice exhibit a spontaneous splitting in the circadian rhythm of locomotor activity under constant darkness, suggesting that they contain two weakly coupled oscillators in the circadian clock system regulating locomotor activity rhythm. In order to clarify whether the two oscillators are located in the suprachiasmatic nucleus (SCN), a site of the master circadian pacemaker in mammals, circadian rhythms in mRNA of mouse Period genes (mPer1, mPer2 and mPer3) in the SCN and cerebral cortex were examined during rhythm splitting by in situ hybridization. In the SCN, mPer1 and mPer2 showed a circadian rhythm with a single peak in both split and unsplit mice. The rhythms of mPer1 and mPer2 were slightly phase delayed during rhythm splitting in reference to the activity onset, but the phase relationship between the two rhythms was not changed. In the cerebral cortex, the expression of mPer1 and mPer2 underwent the bimodal fluctuation with peaks temporally corresponding to split activity components. The unsplit mice showed the circadian rhythms with a single peak. There was no difference in the mPer3 rhythms in either the SCN or the cerebral cortex between the split and unsplit mice. These results indicate that the circadian oscillations of mPer1, mPer2 and mPer3 in the SCN are not related to the rhythm splitting of CS mice. The split rhythms of the CS mice are suggested to be caused by uncoupling of oscillators located outside the SCN from the SCN circadian pacemaker.

摘要

CS小鼠在持续黑暗条件下,其运动活动的昼夜节律会出现自发分裂,这表明它们在调节运动活动节律的昼夜节律系统中包含两个弱耦合振荡器。为了阐明这两个振荡器是否位于视交叉上核(SCN),即哺乳动物主昼夜节律起搏器所在的位置,通过原位杂交技术,在节律分裂期间检测了SCN和大脑皮层中小鼠周期基因(mPer1、mPer2和mPer3)mRNA的昼夜节律。在SCN中,mPer1和mPer2在分裂和未分裂的小鼠中均呈现出单峰昼夜节律。在节律分裂期间,mPer1和mPer2的节律相对于活动开始略有相位延迟,但两种节律之间的相位关系没有改变。在大脑皮层中,mPer1和mPer2的表达呈现双峰波动,其峰值在时间上与分裂的活动成分相对应。未分裂的小鼠表现出单峰昼夜节律。分裂和未分裂的小鼠在SCN或大脑皮层中的mPer3节律没有差异。这些结果表明,SCN中mPer1、mPer2和mPer3的昼夜振荡与CS小鼠的节律分裂无关。CS小鼠的分裂节律被认为是由SCN以外的振荡器与SCN昼夜节律起搏器解耦引起的。

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