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Significant Functional Differences Between Dopamine D4 Receptor Polymorphic Variants Upon Heteromerization with α1A Adrenoreceptors.

Authors :
Homar-Ruano, Patricia
Cai, Ning-Sheng
Casadó-Anguera, Verònica
Casadó, Vicent
Ferré, Sergi
Moreno, Estefanía
Canela, Enric I.
Source :
Molecular Neurobiology; Nov2023, Vol. 60 Issue 11, p6566-6583, 18p
Publication Year :
2023

Abstract

The functional role of the dopamine D<subscript>4</subscript> receptor (D<subscript>4</subscript>R) and its main polymorphic variants has become more evident with the demonstration of heteromers of D<subscript>4</subscript>R that control the function of frontal cortico-striatal neurons. Those include heteromers with the α<subscript>2A</subscript> adrenoceptor (α<subscript>2A</subscript>R) and with the D<subscript>2</subscript>R, localized in their cortical somato-dendritic region and striatal nerve terminals, respectively. By using biophysical and cell-signaling methods and heteromer-disrupting peptides in mammalian transfected cells and rat brain slice preparations, here we provide evidence for a new functionally relevant D<subscript>4</subscript>R heteromer, the α<subscript>1A</subscript>R-D<subscript>4</subscript>R heteromer, which is also preferentially localized in cortico-striatal glutamatergic terminals. Significant differences in allosteric modulations between heteromers of α<subscript>1A</subscript>R with the D<subscript>4.4</subscript>R and D<subscript>4.7</subscript>R polymorphic variants could be evidenced with the analysis of G protein-dependent and independent signaling. Similar negative allosteric modulations between α<subscript>1A</subscript>R and D<subscript>4</subscript>R ligands could be demonstrated for both α<subscript>1A</subscript>R-D<subscript>4.4</subscript>R and α<subscript>1A</subscript>R-D<subscript>4.7</subscript>R heteromers on G protein-independent signaling, but only for α<subscript>1A</subscript>R-D<subscript>4.4</subscript>R on G protein-dependent signaling. From these functional differences, it is proposed that the D<subscript>4.4</subscript>R variant provides a gain of function of the α<subscript>1A</subscript>R-mediated noradrenergic stimulatory control of cortico-striatal glutamatergic neurotransmission, which could result in a decrease in the vulnerability for impulse control-related neuropsychiatric disorders and increase in the vulnerability for posttraumatic stress disorder. [ABSTRACT FROM AUTHOR]

Details

Language :
English
ISSN :
08937648
Volume :
60
Issue :
11
Database :
Complementary Index
Journal :
Molecular Neurobiology
Publication Type :
Academic Journal
Accession number :
172361491
Full Text :
https://doi.org/10.1007/s12035-023-03476-8