A2A-D2 Heteromers on Striatal Astrocytes: Biochemical and Biophysical Evidence

Author:

Pelassa Simone,Guidolin DiegoORCID,Venturini Arianna,Averna MonicaORCID,Frumento Giulia,Campanini Letizia,Bernardi Rosa,Cortelli PietroORCID,Calandra Buonaura Giovanna,Maura Guido,Agnati Luigi F.,Cervetto Chiara,Marcoli Manuela

Abstract

Our previous findings indicate that A2A and D2 receptors are co-expressed on adult rat striatal astrocytes and on the astrocyte processes, and that A2A-D2 receptor–receptor interaction can control the release of glutamate from the processes. Functional evidence suggests that the receptor–receptor interaction was based on heteromerization of native A2A and D2 receptors at the plasma membrane of striatal astrocyte processes. We here provide biochemical and biophysical evidence confirming that receptor–receptor interaction between A2A and D2 receptors at the astrocyte plasma membrane is based on A2A-D2 heteromerization. To our knowledge, this is the first direct demonstration of the ability of native A2A and D2 receptors to heteromerize on glial cells. As striatal astrocytes are recognized to be involved in Parkinson’s pathophysiology, the findings that adenosine A2A and dopamine D2 receptors can form A2A-D2 heteromers on the astrocytes in the striatum (and that these heteromers can play roles in the control of the striatal glutamatergic transmission) may shed light on the molecular mechanisms involved in the pathogenesis of the disease.

Publisher

MDPI AG

Subject

Inorganic Chemistry,Organic Chemistry,Physical and Theoretical Chemistry,Computer Science Applications,Spectroscopy,Molecular Biology,General Medicine,Catalysis

Reference57 articles.

1. Aspects on receptor regulation and isoreceptor identification;Agnati;Med. Biol.,1980

2. Evidence for Cholecystokinin-Dopamine Receptor Interactions in the Central Nervous System of the Adult and Old Rat

3. The size of the mammalian lung β2-adrenergic receptor as determined by target size analysis and immunoaffinity chromatography

4. Covalent crosslinking of angiotensin II to its binding sites in rat adrenal membranes.

5. Evidence for the existence of receptor-receptor interactions in the central nervous system. Studies on the regulation of monoamine receptors by neuropeptides;Fuxe;J. Neural Transm.,1983

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