Abstract
The possible molecular basis for the previously described antagonistic interactions between adenosine A(1) receptors (A(1)R) and dopamine D(1) receptors (D(1)R) in the brain have been studied in mouse fibroblast Ltk(-) cells cotransfected with human A(1)R and D(1)R cDNAs or with human A(1)R and dopamine D(2) receptor (long-form) (D(2)R) cDNAs and in cortical neurons in culture. A(1)R and D(1)R, but not A(1)R and D(2)R, were found to coimmunoprecipitate in cotransfected fibroblasts. This selective A(1)R/D(1)R heteromerization disappeared after pretreatment with the D(1)R agonist, but not after combined pretreatment with D(1)R and A(1)R agonists. A high degree of A(1)R and D(1)R colocalization, demonstrated in double immunofluorescence experiments with confocal laser microscopy, was found in both cotransfected fibroblast cells and cortical neurons in culture. On the other hand, a low degree of A(1)R and D(2)R colocalization was observed in cotransfected fibroblasts. Pretreatment with the A(1)R agonist caused coclustering (coaggregation) of A(1)R and D(1)R, which was blocked by combined pretreatment with the D(1)R and A(1)R agonists in both fibroblast cells and in cortical neurons in culture. Combined pretreatment with D(1)R and A(1)R agonists, but not with either one alone, substantially reduced the D(1)R agonist-induced accumulation of cAMP. The A(1)R/D(1)R heteromerization may be one molecular basis for the demonstrated antagonistic modulation of A(1)R of D(1)R receptor signaling in the brain. The persistence of A(1)R/D(1)R heteromerization seems to be essential for the blockade of A(1)R agonist-induced A(1)R/D(1)R coclustering and for the desensitization of the D(1)R agonist-induced cAMP accumulation seen on combined pretreatment with D(1)R and A(1)R agonists, which indicates a potential role of A(1)R/D(1)R heteromers also in desensitization mechanisms and receptor trafficking.
MeSH Terms
2,3,4,5-Tetrahydro-7,8-dihydroxy-1-phenyl-1H-3-benzazepine/pharmacology
Adenosine/analogs & derivatives,pharmacology
Animals
Cell Line
Cells, Cultured
Cerebral Cortex/cytology
Cyclic AMP/metabolism
Dimerization
Dopamine Agonists/pharmacology
Fibroblasts/cytology,drug effects,metabolism
Humans
Mice
Neurons/cytology,drug effects,metabolism
Precipitin Tests
Rats
Rats, Sprague-Dawley
Receptors, Dopamine D1/genetics,metabolism,physiology
Receptors, Dopamine D2/metabolism
Receptors, Purinergic P1/genetics,metabolism,physiology
Chemicals
Dopamine Agonists
Receptors, Dopamine D1
Receptors, Dopamine D2
Receptors, Purinergic P1
N-(1-methyl-2-phenylethyl)adenosine
2,3,4,5-Tetrahydro-7,8-dihydroxy-1-phenyl-1H-3-benzazepine
Cyclic AMP
Adenosine
Authors & Affiliations
16 authors, click to expand affiliations / ORCID
Ginés S
Department of Biochemistry and Molecular Biology, University of Barcelona, 08028 Barcelona, Spain.
Hillion J
Torvinen M
Le Crom S
Casadó V
Canela E I
Rondin S
Lew J Y
Watson S
Zoli M
Agnati L F
Verniera P
Lluis C
Ferré S
Fuxe K
Franco R
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