cAMP-Dependent Signaling as a Core Component of the Mammalian Circadian Pacemaker
Top Cited Papers
- 16 May 2008
- journal article
- other
- Published by American Association for the Advancement of Science (AAAS) in Science
- Vol. 320 (5878), 949-953
- https://doi.org/10.1126/science.1152506
Abstract
The mammalian circadian clockwork is modeled as transcriptional and posttranslational feedback loops, whereby circadian genes are periodically suppressed by their protein products. We show that adenosine 3′,5′-monophosphate (cAMP) signaling constitutes an additional, bona fide component of the oscillatory network. cAMP signaling is rhythmic and sustains the transcriptional loop of the suprachiasmatic nucleus, determining canonical pacemaker properties of amplitude, phase, and period. This role is general and is evident in peripheral mammalian tissues and cell lines, which reveals an unanticipated point of circadian regulation in mammals qualitatively different from the existing transcriptional feedback model. We propose that daily activation of cAMP signaling, driven by the transcriptional oscillator, in turn sustains progression of transcriptional rhythms. In this way, clock output constitutes an input to subsequent cycles.Keywords
This publication has 28 references indexed in Scilit:
- The Arabidopsis Circadian Clock Incorporates a cADPR-Based Feedback LoopScience, 2007
- Intracellular Ca2+Regulates Free-Running Circadian Clock OscillationIn VivoJournal of Neuroscience, 2007
- Cycling of CRYPTOCHROME Proteins Is Not Necessary for Circadian-Clock Function in Mammalian FibroblastsCurrent Biology, 2007
- GABA and G i/o differentially control circadian rhythms and synchrony in clock neuronsProceedings of the National Academy of Sciences, 2006
- A Novel Cyclic AMP-Dependent Epac-Rit Signaling Pathway Contributes to PACAP38-Mediated Neuronal DifferentiationMolecular and Cellular Biology, 2006
- Presynaptic Mechanism Underlying cAMP-Induced Synaptic Potentiation in Medial Prefrontal Cortex Pyramidal NeuronsMolecular Pharmacology, 2005
- System-level identification of transcriptional circuits underlying mammalian circadian clocksNature Genetics, 2005
- Quickening the Pace: Looking into the Heart of HCN ChannelsNeuron, 2004
- Oscillatory Expression of the bHLH Factor Hes1 Regulated by a Negative Feedback LoopScience, 2002
- Coordination of circadian timing in mammalsNature, 2002