A highly tunable dopaminergic oscillator generates ultradian rhythms of behavioral arousal
Ultradian (∼4 hr) rhythms in locomotor activity that do not depend on the master circadian pacemaker in the suprachiasmatic nucleus have been observed across mammalian species, however, the underlying mechanisms driving these rhythms are unknown. We show that disruption of the dopamine transporter g...
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doaj-981b7ecdc6f342f5baf28bc9d46e0e8c2021-05-04T23:36:04ZengeLife Sciences Publications LtdeLife2050-084X2014-12-01310.7554/eLife.05105A highly tunable dopaminergic oscillator generates ultradian rhythms of behavioral arousalIan D Blum0https://orcid.org/0000-0001-6999-8364Lei Zhu1Luc Moquin2Maia V Kokoeva3Alain Gratton4Bruno Giros5Kai-Florian Storch6Department of Psychiatry, McGill University, Montreal, Canada; Douglas Mental Health University Institute, Montreal, Canada; Integrated Program in Neuroscience, McGill University, Montreal, CanadaDepartment of Psychiatry, McGill University, Montreal, Canada; Douglas Mental Health University Institute, Montreal, CanadaDouglas Mental Health University Institute, Montreal, CanadaDepartment of Medicine, McGill University, Montreal, CanadaDepartment of Psychiatry, McGill University, Montreal, Canada; Douglas Mental Health University Institute, Montreal, CanadaDepartment of Psychiatry, McGill University, Montreal, Canada; Douglas Mental Health University Institute, Montreal, Canada; INSERM UMR S1130 CNRS, UMR8246, Sorbonne University, Paris, FranceDepartment of Psychiatry, McGill University, Montreal, Canada; Douglas Mental Health University Institute, Montreal, CanadaUltradian (∼4 hr) rhythms in locomotor activity that do not depend on the master circadian pacemaker in the suprachiasmatic nucleus have been observed across mammalian species, however, the underlying mechanisms driving these rhythms are unknown. We show that disruption of the dopamine transporter gene lengthens the period of ultradian locomotor rhythms in mice. Period lengthening also results from chemogenetic activation of midbrain dopamine neurons and psychostimulant treatment, while the antipsychotic haloperidol has the opposite effect. We further reveal that striatal dopamine levels fluctuate in synchrony with ultradian activity cycles and that dopaminergic tone strongly predicts ultradian period. Our data indicate that an arousal regulating, dopaminergic ultradian oscillator (DUO) operates in the mammalian brain, which normally cycles in harmony with the circadian clock, but can desynchronize when dopamine tone is elevated, thereby producing aberrant patterns of arousal which are strikingly similar to perturbed sleep-wake cycles comorbid with psychopathology.https://elifesciences.org/articles/05105chronobiologydopaminearousalultradianoscillatordopamine transporter |
collection |
DOAJ |
language |
English |
format |
Article |
sources |
DOAJ |
author |
Ian D Blum Lei Zhu Luc Moquin Maia V Kokoeva Alain Gratton Bruno Giros Kai-Florian Storch |
spellingShingle |
Ian D Blum Lei Zhu Luc Moquin Maia V Kokoeva Alain Gratton Bruno Giros Kai-Florian Storch A highly tunable dopaminergic oscillator generates ultradian rhythms of behavioral arousal eLife chronobiology dopamine arousal ultradian oscillator dopamine transporter |
author_facet |
Ian D Blum Lei Zhu Luc Moquin Maia V Kokoeva Alain Gratton Bruno Giros Kai-Florian Storch |
author_sort |
Ian D Blum |
title |
A highly tunable dopaminergic oscillator generates ultradian rhythms of behavioral arousal |
title_short |
A highly tunable dopaminergic oscillator generates ultradian rhythms of behavioral arousal |
title_full |
A highly tunable dopaminergic oscillator generates ultradian rhythms of behavioral arousal |
title_fullStr |
A highly tunable dopaminergic oscillator generates ultradian rhythms of behavioral arousal |
title_full_unstemmed |
A highly tunable dopaminergic oscillator generates ultradian rhythms of behavioral arousal |
title_sort |
highly tunable dopaminergic oscillator generates ultradian rhythms of behavioral arousal |
publisher |
eLife Sciences Publications Ltd |
series |
eLife |
issn |
2050-084X |
publishDate |
2014-12-01 |
description |
Ultradian (∼4 hr) rhythms in locomotor activity that do not depend on the master circadian pacemaker in the suprachiasmatic nucleus have been observed across mammalian species, however, the underlying mechanisms driving these rhythms are unknown. We show that disruption of the dopamine transporter gene lengthens the period of ultradian locomotor rhythms in mice. Period lengthening also results from chemogenetic activation of midbrain dopamine neurons and psychostimulant treatment, while the antipsychotic haloperidol has the opposite effect. We further reveal that striatal dopamine levels fluctuate in synchrony with ultradian activity cycles and that dopaminergic tone strongly predicts ultradian period. Our data indicate that an arousal regulating, dopaminergic ultradian oscillator (DUO) operates in the mammalian brain, which normally cycles in harmony with the circadian clock, but can desynchronize when dopamine tone is elevated, thereby producing aberrant patterns of arousal which are strikingly similar to perturbed sleep-wake cycles comorbid with psychopathology. |
topic |
chronobiology dopamine arousal ultradian oscillator dopamine transporter |
url |
https://elifesciences.org/articles/05105 |
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