Dopamine modulates diurnal and circadian rhythms of protein phosphorylation in photoreceptor cells of mouse retina
- 1 May 2008
- journal article
- Published by Wiley in European Journal of Neuroscience
- Vol. 27 (10) , 2691-2700
- https://doi.org/10.1111/j.1460-9568.2008.06224.x
Abstract
Many aspects of photoreceptor metabolism are regulated as diurnal or circadian rhythms. The nature of the signals that drive rhythms in mouse photoreceptors is unknown. Dopamine amacrine cells in mouse retina express core circadian clock genes, leading us to test the hypothesis that dopamine regulates rhythms of protein phosphorylation in photoreceptor cells. To this end we investigated the phosphorylation of phosducin, an abundant photoreceptor-specific phosphoprotein. In mice exposed to a daily light–dark cycle, robust daily rhythms of phosducin phosphorylation and retinal dopamine metabolism were observed. Phospho-phosducin levels were low during the daytime and high at night, and correlated negatively with levels of the dopamine metabolite 3,4-dihydroxyphenylacetic acid. The effect of light on phospho-phosducin levels was mimicked by pharmacological activation of dopamine D4 receptors. The amplitude of the diurnal rhythm of phospho-phosducin was reduced by > 50% in D4 receptor-knockout mice, due to higher daytime levels of phospho-phosducin. In addition, the daytime level of phospho-phosducin was significantly elevated by L-745,870, a dopamine D4 receptor antagonist. These data indicate that dopamine and other light-dependent processes cooperatively regulate the diurnal rhythm of phosducin phosphorylation. Under conditions of constant darkness a circadian rhythm of phosducin phosphorylation was observed, which correlated negatively with the circadian rhythm of 3,4-dihydroxyphenylacetic acid levels. The circadian fluctuation of phospho-phosducin was completely abolished by constant infusion of L-745,870, indicating that the rhythm of phospho-phosducin level is driven by dopamine. Thus, dopamine release in response to light and circadian clocks drives daily rhythms of protein phosphorylation in photoreceptor cells.Keywords
This publication has 56 references indexed in Scilit:
- Dopamine D4 receptors regulate intracellular calcium concentration in cultured chicken cone photoreceptor cells: Relationship to dopamine receptor-mediated inhibition of cAMP formationBrain Research, 2008
- Intrinsic Circadian Clock of the Mammalian Retina: Importance for Retinal Processing of Visual InformationPublished by Elsevier ,2007
- Localization of a circadian clock in mammalian photoreceptorsThe FASEB Journal, 2007
- Circadian organization of the mammalian retinaProceedings of the National Academy of Sciences, 2006
- Site-specific Phosphorylation of Phosducin in Intact RetinaPublished by Elsevier ,2004
- The Carboxyl Terminal Domain of Phosducin Functions as a Transcriptional ActivatorBiochemical and Biophysical Research Communications, 2000
- Phosducin and βγ-Transducin Interaction I: Effects of Post-translational ModificationsBiochemical and Biophysical Research Communications, 1997
- Dopamine and its agonists reduce a light-sensitive poor of cyclic AMP in mouse photoreceptorsVisual Neuroscience, 1990
- A novel complex from bovine visual cells of a 33,000-dalton phosphoprotein with .beta.- and .gamma.-transducin: purification and subunit structureBiochemistry, 1987
- Circadian rhythm in rat retinal dopamineNeuroscience Letters, 1984