Clock and cycle limit starvation-induced sleep loss in Drosophila.

Neural systems controlling the vital functions of sleep and feeding in mammals are tightly interconnected: sleep deprivation promotes feeding, whereas starvation suppresses sleep. Here we show that starvation in Drosophila potently suppresses sleep, suggesting that these two homeostatically regulate...

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Main Authors: Keene, A, Duboué, E, McDonald, D, Dus, M, Suh, G, Waddell, S, Blau, J
Format: Journal article
Language:English
Published: 2010
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author Keene, A
Duboué, E
McDonald, D
Dus, M
Suh, G
Waddell, S
Blau, J
author_facet Keene, A
Duboué, E
McDonald, D
Dus, M
Suh, G
Waddell, S
Blau, J
author_sort Keene, A
collection OXFORD
description Neural systems controlling the vital functions of sleep and feeding in mammals are tightly interconnected: sleep deprivation promotes feeding, whereas starvation suppresses sleep. Here we show that starvation in Drosophila potently suppresses sleep, suggesting that these two homeostatically regulated behaviors are also integrated in flies. The sleep-suppressing effect of starvation is independent of the mushroom bodies, a previously identified sleep locus in the fly brain, and therefore is regulated by distinct neural circuitry. The circadian clock genes Clock (Clk) and cycle (cyc) are critical for proper sleep suppression during starvation. However, the sleep suppression is independent of light cues and of circadian rhythms as shown by the fact that starved period mutants sleep like wild-type flies. By selectively targeting subpopulations of Clk-expressing neurons, we localize the observed sleep phenotype to the dorsally located circadian neurons. These findings show that Clk and cyc act during starvation to modulate the conflict of whether flies sleep or search for food.
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spelling oxford-uuid:72beb4be-2654-43e0-86f9-6d1e143b65c42022-03-26T19:52:00ZClock and cycle limit starvation-induced sleep loss in Drosophila.Journal articlehttp://purl.org/coar/resource_type/c_dcae04bcuuid:72beb4be-2654-43e0-86f9-6d1e143b65c4EnglishSymplectic Elements at Oxford2010Keene, ADuboué, EMcDonald, DDus, MSuh, GWaddell, SBlau, JNeural systems controlling the vital functions of sleep and feeding in mammals are tightly interconnected: sleep deprivation promotes feeding, whereas starvation suppresses sleep. Here we show that starvation in Drosophila potently suppresses sleep, suggesting that these two homeostatically regulated behaviors are also integrated in flies. The sleep-suppressing effect of starvation is independent of the mushroom bodies, a previously identified sleep locus in the fly brain, and therefore is regulated by distinct neural circuitry. The circadian clock genes Clock (Clk) and cycle (cyc) are critical for proper sleep suppression during starvation. However, the sleep suppression is independent of light cues and of circadian rhythms as shown by the fact that starved period mutants sleep like wild-type flies. By selectively targeting subpopulations of Clk-expressing neurons, we localize the observed sleep phenotype to the dorsally located circadian neurons. These findings show that Clk and cyc act during starvation to modulate the conflict of whether flies sleep or search for food.
spellingShingle Keene, A
Duboué, E
McDonald, D
Dus, M
Suh, G
Waddell, S
Blau, J
Clock and cycle limit starvation-induced sleep loss in Drosophila.
title Clock and cycle limit starvation-induced sleep loss in Drosophila.
title_full Clock and cycle limit starvation-induced sleep loss in Drosophila.
title_fullStr Clock and cycle limit starvation-induced sleep loss in Drosophila.
title_full_unstemmed Clock and cycle limit starvation-induced sleep loss in Drosophila.
title_short Clock and cycle limit starvation-induced sleep loss in Drosophila.
title_sort clock and cycle limit starvation induced sleep loss in drosophila
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