Abstract
The ability of dopamine receptors to interact with other receptor subtypes may provide mechanisms for modulating dopamine-related functions and behaviors. In particular, there is evidence suggesting that the trace amine-associated receptor 1 (TAAR1) affects the dopaminergic system by regulating the firing rate of dopaminergic neurons or by altering dopamine D2 receptor (D2R) responsiveness to ligands. TAAR1 is a Gαs protein-coupled receptor that is activated by biogenic amines, “trace amines,” such as β-phenylethylamine (β-PEA) and tyramine that are normally found at low concentrations in the mammalian brain. In the present study, we investigated the biochemical mechanism of interaction between TAAR1 and D2R and the role this interaction plays in D2R-related signaling and behaviors. Using a bioluminescence resonance energy transfer biosensor for cAMP, we demonstrated that the D2R antagonists haloperidol, raclopride, and amisulpride were able to enhance selectively a TAAR1-mediated β-PEA increase of cAMP. Moreover, TAAR1 and D2R were able to form heterodimers when coexpressed in human embryonic kidney 293 cells, and this direct interaction was disrupted in the presence of haloperidol. In addition, in mice lacking TAAR1, haloperidol-induced striatal c-Fos expression and catalepsy were significantly reduced. Taken together, these data suggest that TAAR1 and D2R have functional and physical interactions that could be critical for the modulation of the dopaminergic system by TAAR1 in vivo.
Footnotes
This work was supported in part by F. Hoffmann-La Roche Ltd. (Basel, Switzerland); Fondazione Compagnia di San Paolo (Torino, Italy); the National Institutes of Health National Institute on Drug Abuse [Grants U01-DA022950, P30-DA029925]; the National Institutes of Health National Institute of Mental Health [Grant R01-MH073853]; and a European Marie-Curie Outgoing International Fellowship [FP6–2005-Mobility-6].
Article, publication date, and citation information can be found at http://molpharm.aspetjournals.org.
doi:10.1124/mol.111.073304.
-
ABBREVIATIONS:
- TA
- trace amine
- β-PEA
- β-phenylethylamine
- D2R
- dopamine D2R receptor
- BRET
- bioluminescence resonance energy transfer
- EPAC
- exchange protein directly activated by cAMP
- β2-AR
- β2-adrenergic receptor
- DA
- dopamine
- TAAR
- trace amine-associated receptor
- TAAR1-KO
- trace amine-associated receptor 1 knockout
- DAT
- dopamine transporter
- Rluc
- Renilla reniformis luciferase
- GPCR
- G protein-coupled receptor
- PTX
- pertussis toxin
- FBS
- fetal bovine serum
- HA
- hemagglutinin
- PCR
- polymerase chain reaction
- YFP
- yellow fluorescent protein
- ER
- endoplasmic reticulum
- PM
- plasma membrane
- ELISA
- enzyme-linked immunosorbent assay
- TBS
- Tris-buffered saline
- WT
- wild type
- HET
- heterozygous
- iso
- isoproterenol
- halo
- haloperidol
- ANOVA
- analysis of variance
- HEK
- human embryonic kidney.
- Received April 28, 2011.
- Accepted June 10, 2011.
- Copyright © 2011 The American Society for Pharmacology and Experimental Therapeutics
MolPharm articles become freely available 12 months after publication, and remain freely available for 5 years.Non-open access articles that fall outside this five year window are available only to institutional subscribers and current ASPET members, or through the article purchase feature at the bottom of the page.
|