Literature DB >> 9361002

Expression of dopamine D3 receptor dimers and tetramers in brain and in transfected cells.

E A Nimchinsky1, P R Hof, W G Janssen, J H Morrison, C Schmauss.   

Abstract

The expression and characteristics of the dopamine D3 receptor protein were studied in brain and in stably transfected GH3 cells. Monoclonal antibodies were used for immunoprecipitation and immunoblot experiments. Immunoprecipitates obtained from primate and rodent brain tissues contain a low molecular weight D3 protein and one or two larger protein species whose molecular mass are integral multiples of the low molecular weight protein and thus appear to have resulted from dimerization and tetramerization of a D3 monomer. Whereas D3 receptor multimers were found to be abundantly expressed in brain, the major D3 immunoreactivity expressed in stable D3-expressing rat GH3 cells was found to be a monomer. However, multimeric D3 receptor species with electrophoretic mobilities similar to those expressed in brain were also seen in D3-expressing GH3 cells when a truncated D3-like protein (named D3nf) was co-expressed in these cells. Furthermore, results from immunoprecipitation experiments with D3- and D3nf-specific antibodies show that the higher-order D3 proteins extracted from brain and D3/D3nf double transfectants also contain D3nf immunoreactivity, and immunocytochemical studies show that the expression of D3 and D3nf immunoreactivities overlaps substantially in monkey and rat cortical neurons. Altogether, these data show oligomeric D3 receptor protein expression in vivo and they suggest that at least some of these oligomers are heteroligomeric protein complexes containing D3 and the truncated D3nf protein.

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Year:  1997        PMID: 9361002     DOI: 10.1074/jbc.272.46.29229

Source DB:  PubMed          Journal:  J Biol Chem        ISSN: 0021-9258            Impact factor:   5.157


  28 in total

1.  Heteromeric association creates a P2Y-like adenosine receptor.

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2.  Functional homomers and heteromers of dopamine D2L and D3 receptors co-exist at the cell surface.

Authors:  Chantevy Pou; Clotilde Mannoury la Cour; Leigh A Stoddart; Mark J Millan; Graeme Milligan
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Review 3.  Adenosine-dopamine interactions in the pathophysiology and treatment of CNS disorders.

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Review 4.  Adenosine A2A and dopamine D2 heteromeric receptor complexes and their function.

Authors:  Kjell Fuxe; Sergi Ferré; Meritxell Canals; Maria Torvinen; Anton Terasmaa; Daniel Marcellino; Steven R Goldberg; William Staines; Kirsten X Jacobsen; Carmen Lluis; Amina S Woods; Luigi F Agnati; Rafael Franco
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5.  Relative expression of D3 dopamine receptor and alternative splice variant D3nf mRNA in high and low responders to novelty.

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Review 6.  Intramembrane receptor-receptor interactions: a novel principle in molecular medicine.

Authors:  K Fuxe; M Canals; M Torvinen; D Marcellino; A Terasmaa; S Genedani; G Leo; D Guidolin; Z Diaz-Cabiale; A Rivera; L Lundstrom; U Langel; J Narvaez; S Tanganelli; C Lluis; S Ferré; A Woods; R Franco; L F Agnati
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Review 7.  Fluorescent and bioluminescent protein-fragment complementation assays in the study of G protein-coupled receptor oligomerization and signaling.

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Review 8.  Theoretical considerations on the topological organization of receptor mosaics.

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9.  Dopaminergic regulation of dopamine D3 and D3nf receptor mRNA expression.

Authors:  Neil M Richtand; Yanhong Liu; Rebecca Ahlbrand; Juliana R Sullivan; Amy Hauck Newman; Robert K McNamara
Journal:  Synapse       Date:  2010-08       Impact factor: 2.562

10.  CRH-stimulation of cyclic adenosine 5'-monophosphate pathway is partially inhibited by the coexpression of CRH-R1 and CRH-R2alpha.

Authors:  G Maya-Núñez; C Castro-Fernández; J P Méndez
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