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Dual origins of the intracellular circadian calcium rhythm in the suprachiasmatic nucleus.


ABSTRACT: In mammals, the master circadian clock is located in the suprachiasmatic nucleus (SCN), where most neurons show circadian rhythms of intracellular Ca2+ levels. However, the origin of these Ca2+ rhythms remains largely unknown. In this study, we successfully monitored the intracellular circadian Ca2+ rhythms together with the circadian PER2 and firing rhythms in a single SCN slice ex vivo, which enabled us to explore the origins. The phase relation between the circadian PER2 and Ca2+ rhythms, but not between the circadian PER2 and firing rhythms, was significantly altered in Cry1/Cry2 double knockout mice, which display a loss of intercellular synchronization in the SCN. In addition, in Cry1/Cry2 double knockout mice, circadian Ca2+ rhythms were abolished in the dorsolateral SCN, but were maintained in the majority of the ventromedial SCN. These findings indicate that intracellular circadian Ca2+ rhythms are composed of an exogenous and endogenous component involving PER2 expression.

SUBMITTER: Enoki R 

PROVIDER: S-EPMC5290527 | biostudies-literature | 2017 Feb

REPOSITORIES: biostudies-literature

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Dual origins of the intracellular circadian calcium rhythm in the suprachiasmatic nucleus.

Enoki Ryosuke R   Ono Daisuke D   Kuroda Shigeru S   Honma Sato S   Honma Ken-Ichi KI  

Scientific reports 20170203


In mammals, the master circadian clock is located in the suprachiasmatic nucleus (SCN), where most neurons show circadian rhythms of intracellular Ca<sup>2+</sup> levels. However, the origin of these Ca<sup>2+</sup> rhythms remains largely unknown. In this study, we successfully monitored the intracellular circadian Ca<sup>2+</sup> rhythms together with the circadian PER2 and firing rhythms in a single SCN slice ex vivo, which enabled us to explore the origins. The phase relation between the cir  ...[more]

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