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利用Per基因表达在仓鼠视交叉上核中寻找光周期振荡器。

Using Per gene expression to search for photoperiodic oscillators in the hamster suprachiasmatic nucleus.

作者信息

de la Iglesia Horacio O, Meyer Jennifer, Schwartz William J

机构信息

Department of Neurology, University of Massachusetts Medical School, 55 Lake Avenue North, Worcester, MA 01655, USA.

出版信息

Brain Res Mol Brain Res. 2004 Aug 23;127(1-2):121-7. doi: 10.1016/j.molbrainres.2004.05.018.

Abstract

The circadian pacemaker in the suprachiasmatic nucleus (SCN) is also believed to underlie photoperiodic (seasonal) timekeeping in mammals. This clock has been modeled as a complex pacemaker composed of two coupled circadian oscillators; variability in their mutual phase relationship could account for the ability to measure daylength, with putative morning and evening oscillators synchronized to dawn and dusk, respectively. Recently, several genes have been identified that are believed to be part of the clock's core oscillatory mechanism. Here, we investigate how such molecular oscillations are altered as a function of photoperiod by analyzing Period (Per1, Per2, and Per3) gene expression at the mRNA level using SCN tissue sections and in situ hybridization. Golden hamsters were entrained to complete 24-h light-dark (LD) cycles with either a long (16 h) or a short (8 h) photophase, or they were entrained to the long complete photoperiod and then allowed to free-run in constant darkness. The results show large photoperiod-dependent changes in the duration of high daytime SCN Per1 and Per2 mRNA levels and small changes in the phase difference between their rhythms.

摘要

视交叉上核(SCN)中的昼夜节律起搏器也被认为是哺乳动物光周期(季节性)计时的基础。这个生物钟被模拟为一个由两个耦合的昼夜振荡器组成的复杂起搏器;它们相互相位关系的变化可以解释测量白昼长度的能力,假定的早晨和晚上振荡器分别与黎明和黄昏同步。最近,已经鉴定出几个基因,它们被认为是生物钟核心振荡机制的一部分。在这里,我们通过使用SCN组织切片和原位杂交技术在mRNA水平分析周期(Per1、Per2和Per3)基因表达,来研究这种分子振荡如何作为光周期的函数而改变。金黄仓鼠被置于长(16小时)或短(8小时)光照期的完整24小时明暗(LD)循环中,或者被置于长完整光周期中,然后在持续黑暗中自由运行。结果表明,白天SCN中Per1和Per2 mRNA高水平的持续时间存在很大的光周期依赖性变化,并且它们节律之间的相位差变化很小。

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