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Coordination of the transcriptome and metabolome by the circadian clock.


ABSTRACT: The circadian clock governs a large array of physiological functions through the transcriptional control of a significant fraction of the genome. Disruption of the clock leads to metabolic disorders, including obesity and diabetes. As food is a potent zeitgeber (ZT) for peripheral clocks, metabolites are implicated as cellular transducers of circadian time for tissues such as the liver. From a comprehensive dataset of over 500 metabolites identified by mass spectrometry, we reveal the coordinate clock-controlled oscillation of many metabolites, including those within the amino acid and carbohydrate metabolic pathways as well as the lipid, nucleotide, and xenobiotic metabolic pathways. Using computational modeling, we present evidence of synergistic nodes between the circadian transcriptome and specific metabolic pathways. Validation of these nodes reveals that diverse metabolic pathways, including the uracil salvage pathway, oscillate in a circadian fashion and in a CLOCK-dependent manner. This integrated map illustrates the coherence within the circadian metabolome, transcriptome, and proteome and how these are connected through specific nodes that operate in concert to achieve metabolic homeostasis.

SUBMITTER: Eckel-Mahan KL 

PROVIDER: S-EPMC3325727 | biostudies-literature | 2012 Apr

REPOSITORIES: biostudies-literature

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Coordination of the transcriptome and metabolome by the circadian clock.

Eckel-Mahan Kristin L KL   Patel Vishal R VR   Mohney Robert P RP   Vignola Katie S KS   Baldi Pierre P   Sassone-Corsi Paolo P  

Proceedings of the National Academy of Sciences of the United States of America 20120319 14


The circadian clock governs a large array of physiological functions through the transcriptional control of a significant fraction of the genome. Disruption of the clock leads to metabolic disorders, including obesity and diabetes. As food is a potent zeitgeber (ZT) for peripheral clocks, metabolites are implicated as cellular transducers of circadian time for tissues such as the liver. From a comprehensive dataset of over 500 metabolites identified by mass spectrometry, we reveal the coordinate  ...[more]

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