Locomotor activity is regulated by D2‐like receptors in Drosophila: An anatomic and functional analysis
- 12 January 2007
- journal article
- research article
- Published by Wiley in Developmental Neurobiology
- Vol. 67 (3) , 378-393
- https://doi.org/10.1002/dneu.20355
Abstract
In mammals, dopamine 2‐like receptors are expressed in distinct pathways within the central nervous system, as well as in peripheral tissues. Selected neuronal D2‐like receptors play a critical role in modulating locomotor activity and, as such, represent an important therapeutic target (e.g. in Parkinson's disease). Previous studies have established that proteins required for dopamine (DA) neurotransmission are highly conserved between mammals and the fruit fly Drosophila melanogaster. These include a fly dopamine 2‐like receptor (DD2R; Hearn et al. PNAS 2002 99(22):14554) that has structural and pharmacologic similarity to the human D2‐like (D2R). In the current study, we define the spatial expression pattern of DD2R, and functionally characterize flies with reduced DD2 receptor levels. We show that DD2R is expressed in the larval and adult nervous systems, in cell groups that include the Ap‐let cohort of peptidergic neurons, as well as in peripheral tissues including the gut and Malpighian tubules. To examine DD2R function in vivo, we generated RNA‐interference (RNAi) flies with reduced DD2R expression. Behavioral analysis revealed that these flies show significantly decreased locomotor activity, similar to the phenotype observed in mammals with reduced D2R expression. The fly RNAi phenotype can be rescued by administration of the DD2R synthetic agonist bromocriptine, indicating specificity for the RNAi effect. These results suggest Drosophila as a useful system for future studies aimed at identifying modifiers of dopaminergic signaling/locomotor function. © 2007 Wiley Periodicals, Inc. Develop Neurobiol, 2007Keywords
This publication has 63 references indexed in Scilit:
- Overexpression of the Drosophila vesicular monoamine transporter increases motor activity and courtship but decreases the behavioral response to cocaineMolecular Psychiatry, 2005
- Arousal Mechanisms: Speedy Flies Don’t Sleep at NightCurrent Biology, 2005
- Remote Control of Behavior through Genetically Targeted Photostimulation of NeuronsCell, 2005
- Ap-let neurons—a peptidergic circuit potentially controlling ecdysial behavior in DrosophilaDevelopmental Biology, 2004
- Targeted gene expression in Drosophila dopaminergic cells using regulatory sequences from tyrosine hydroxylaseJournal of Neurobiology, 2003
- Neuron‐specific age‐related decreases in dopamine receptor subtype mRNAsJournal of Comparative Neurology, 2002
- A Drosophila model of Parkinson's diseaseNature, 2000
- NEW INSIGHTS INTO DOPAMINERGIC RECEPTOR FUNCTION USING ANTISENSE AND GENETICALLY ALTERED ANIMALSAnnual Review of Pharmacology and Toxicology, 1999
- Disruption of the dopamine D3 receptor gene produces renin-dependent hypertension.Journal of Clinical Investigation, 1998
- A primordial dopamine D1‐like adenylyl cyclase‐linked receptor from Drosophila melanogaster displaying poor affinity for benzazepinesFEBS Letters, 1995