Localization of dopamine D2 receptor mRNA and D1 and D2 receptor binding in the rat brain and pituitary: an in situ hybridization- receptor autoradiographic analysis
Open Access
- 1 August 1990
- journal article
- research article
- Published by Society for Neuroscience in Journal of Neuroscience
- Vol. 10 (8) , 2587-2600
- https://doi.org/10.1523/jneurosci.10-08-02587.1990
Abstract
Several lines of evidence suggest the existence of multiple dopamine receptor subtypes, referred to as D1 and D2. The present study examines the distribution of these dopamine binding sites in the rat brain and pituitary in relation to the distribution of D2 receptor mRNA using a combination of in vitro receptor autoradiographic and in situ hybridization techniques. 3H-Raclopride and 3H-SCH23390 (in the presence of 1 microM ketanserin) were used to label D2 and D1 receptor binding sites, respectively, while a 495 bp cRNA probe synthesized from the Sac I-Bgl II fragment of a rat D2 receptor cDNA was used to visualize the D2 receptor mRNA. Analysis of adjacent tissue sections in which receptor autoradiography and in situ hybridization had been performed revealed several brain regions where the D2 binding site and corresponding mRNA appear to be similarly distributed, including the caudate-putamen, nucleus accumbens, olfactory tubercle, globus pallidus, substantia nigra, and ventral tegmental area. In the pituitary gland, D2 binding sites and mRNA appear to be codistributed with very dense levels in the intermediate lobe and individually labeled cells in the anterior lobe. Brain regions demonstrating a lack of correspondence between the distribution of the D2 binding site and D2 receptor mRNA include the olfactory bulb, neocortex, paleocortex, hippocampus, and zona incerta. Several hypotheses are discussed to explain the lack of correspondence in certain brain regions; these include the localization of receptor binding sites on both fibers and cell bodies and receptor transport. These studies provide a better understanding of the anatomical distribution of the D2 receptor and serve as a framework for future regulatory and anatomical mapping studies. By focusing on specific brain regions, such as the nigrostriatal system, hippocampus, and olfactory bulb, they provide insights into D2 receptor synthesis, transport, and insertion into cell membranes.This publication has 27 references indexed in Scilit:
- Specific in vitro and in vivo binding of 3H-raclopride a potent substituted benzamide drug with high affinity for dopamine D-2 receptors in the rat brainBiochemical Pharmacology, 1985
- Dopamine autoreceptors and the effects of drugs on locomotion and dopamine synthesisBritish Journal of Pharmacology, 1985
- CHARACTERIZATION OF DOPAMINE-RECEPTORS MEDIATING INHIBITION OF ADENYLATE-CYCLASE ACTIVITY IN RAT STRIATUM1985
- Differential Effects of Classical and Atypical Antipsychotic Drugs on A9 and A10 Dopamine NeuronsScience, 1983
- SCH-23390, A POTENTIAL BENZAZEPINE ANTI-PSYCHOTIC WITH UNIQUE INTERACTIONS ON DOPAMINERGIC SYSTEMS1983
- Kainic acid lesions dissociate [3H]spiperone and [3H]cis-flupenthixol binding sites in rat striatumEuropean Journal of Pharmacology, 1981
- Characterization of the Dopamine-Responsive Adenylate Cyclase of Bovine Parathyroid Cells and Its Relationship to Parathyroid Hormone SecretionEndocrinology, 1980
- LIGAND: A versatile computerized approach for characterization of ligand-binding systemsAnalytical Biochemistry, 1980
- The localization of receptor binding sites in the substantia nigra and striatum of the ratBrain Research, 1979
- Dopamine Receptor Binding Enhancement Accompanies Lesion-Induced Behavioral SupersensitivityScience, 1977