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The Central Circadian Timing System

Overview
Specialties Biology
Neurology
Date 2013 May 28
PMID 23706187
Citations 51
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Abstract

It has been known since the 1970s that the suprachiasmatic nucleus (SCN) is the brain's main biological clock, and since the 1990s that it uses a genetic clock based on transcriptional-translational loops to tell time. However, the recent demonstration that many other cells in the brain and the body also make use of the same genetic clock raises the question of how the SCN synchronizes all of the other clocks to arrive at a coherent circadian profile of physiology and behavior. In this review, we re-examine the evidence that the SCN clock is necessary for bringing order to the body's biological rhythms, and the circuitry of the circadian timing system by which it accomplishes this goal. Finally, we review the evidence that under conditions of restricted food availability, other clocks may be able to take over from the SCN to determine rhythms of behavior and physiology.

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References
1.
Tahara Y, Hirao A, Moriya T, Kudo T, Shibata S . Effects of medial hypothalamic lesions on feeding-induced entrainment of locomotor activity and liver Per2 expression in Per2::luc mice. J Biol Rhythms. 2010; 25(1):9-18. DOI: 10.1177/0748730409352782. View

2.
Schroeder A, Truong D, Loh D, Jordan M, Roos K, Colwell C . Voluntary scheduled exercise alters diurnal rhythms of behaviour, physiology and gene expression in wild-type and vasoactive intestinal peptide-deficient mice. J Physiol. 2012; 590(23):6213-26. PMC: 3530127. DOI: 10.1113/jphysiol.2012.233676. View

3.
Pendergast J, Nakamura W, Friday R, Hatanaka F, Takumi T, Yamazaki S . Robust food anticipatory activity in BMAL1-deficient mice. PLoS One. 2009; 4(3):e4860. PMC: 2654093. DOI: 10.1371/journal.pone.0004860. View

4.
Krashes M, Koda S, Ye C, Rogan S, Adams A, Cusher D . Rapid, reversible activation of AgRP neurons drives feeding behavior in mice. J Clin Invest. 2011; 121(4):1424-8. PMC: 3069789. DOI: 10.1172/JCI46229. View

5.
Silver R, LeSauter J, Tresco P, Lehman M . A diffusible coupling signal from the transplanted suprachiasmatic nucleus controlling circadian locomotor rhythms. Nature. 1996; 382(6594):810-3. DOI: 10.1038/382810a0. View