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Period1突变体视交叉上核在体外的内源性节律并不代表昼夜节律行为。

Endogenous rhythms in Period1 mutant suprachiasmatic nuclei in vitro do not represent circadian behavior.

作者信息

Pendergast Julie S, Friday Rio C, Yamazaki Shin

机构信息

Department of Biological Sciences, Vanderbilt University, Nashville, Tennessee, 37235-1634, USA.

出版信息

J Neurosci. 2009 Nov 18;29(46):14681-6. doi: 10.1523/JNEUROSCI.3261-09.2009.

Abstract

The mammalian circadian pacemaker in the suprachiasmatic nuclei (SCN) controls daily rhythms of behavior and physiology. Lesions of the SCN cause arrhythmicity of locomotor activity, and transplants of fetal SCN tissue restore rhythmic behavior that is consistent with the periodicity of the donor's genotype, suggesting that the SCN determines the period of the circadian behavioral rhythm. While several studies have demonstrated that the circadian characteristics of in vitro SCN rhythms represent circadian behavior, others have shown that the periods of explanted SCN are not always congruent with locomotor activity. We find that the aberrant rhythms of ex vivo SCN lacking functional Period1 (Per1(-/-)) do not represent the behavioral rhythms of the mutant animals. Surprisingly, in C57BL/6J Per1(-/-) mice, the real-time circadian gene promoter activity rhythm is weak or absent in adult SCN slices in vitro even though the free-running wheel-running activity rhythm is indistinguishable from wild-type (Per1(+/+)) mice. While some neurons in Per1(-/-) SCN explants exhibit robust circadian rhythms, others have irregular and/or low-amplitude rhythms. Together, these data suggest that either a small population of rhythmic neurons in the Per1(-/-) SCN is sufficient to control wheel-running activity or that in vivo physiological factors can compensate for the aberrant endogenous rhythms of Per1(-/-) SCN.

摘要

哺乳动物视交叉上核(SCN)中的昼夜节律起搏器控制着行为和生理的日常节律。SCN损伤会导致运动活动失去节律,而移植胎儿SCN组织可恢复与供体基因型周期一致的节律行为,这表明SCN决定了昼夜行为节律的周期。虽然多项研究表明体外SCN节律的昼夜特征代表昼夜行为,但也有研究表明,移植的SCN周期并不总是与运动活动一致。我们发现,缺乏功能性周期蛋白1(Per1(-/-))的离体SCN异常节律并不代表突变动物的行为节律。令人惊讶的是,在C57BL/6J Per1(-/-)小鼠中,尽管自由活动的转轮活动节律与野生型(Per1(+/+))小鼠无法区分,但体外成年SCN切片中的实时昼夜节律基因启动子活性节律微弱或不存在。虽然Per1(-/-) SCN外植体中的一些神经元表现出强烈的昼夜节律,但其他神经元的节律不规则和/或振幅低。这些数据共同表明,Per1(-/-) SCN中一小部分有节律的神经元足以控制转轮活动,或者体内生理因素可以补偿Per1(-/-) SCN异常的内源性节律。

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