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Modulation of D3R Splicing, Signaling, and Expression by D1R through PKA→PTB Phosphorylation

Authors :
Orlando Casados-Delgado
José Arturo Avalos-Fuentes
Manuel Lara-Lozano
Gisela Tovar-Medina
Carla Daniela Florán-Hernández
Karla Gisela Martínez-Nolasco
Hernán Cortes
Ricardo Felix
José Segovia
Benjamín Florán
Source :
Biomedicines, Vol 12, Iss 1, p 206 (2024)
Publication Year :
2024
Publisher :
MDPI AG, 2024.

Abstract

The D1R and D3R receptors functionally and synergistically interact in striatonigral neurons. Dopaminergic denervation turns this interaction antagonistic, which is correlated with a decrement in D3nf isoform and an increment in D3R membranal expression. The mechanisms of such changes in D3R are attributed to the dysregulation of the expression of their isoforms. The cause and mechanism of this phenomenon remain unknown. Dopaminergic denervation produces a decrement in D1R and PKA activity; we propose that the lack of phosphorylation of PTB (regulator of alternative splicing) by PKA produces the dysregulation of D3R splicing and changes D3R functionality. By using in silico analysis, we found that D3R mRNA has motifs for PTB binding and, by RIP, co-precipitates with PTB. Moreover, D1R activation via PKA promotes PTB phosphorylation. Acute and 5-day D1R blockade decreases the expression of D3nf mRNA. The 5-day treatment reduces D3R, D3nf, and PTB protein in the cytoplasm and increases D3R in the membrane and PTB in the nucleus. Finally, the blockade of D1R mimics the effect of dopaminergic denervation in D1R and D3R signaling. Thus, our data indicate that through PKA→PTB, D1R modulates D3R splicing, expression, and signaling, which are altered during D1R blockade or the lack of stimulation in dopaminergic denervation.

Details

Language :
English
ISSN :
22279059
Volume :
12
Issue :
1
Database :
Directory of Open Access Journals
Journal :
Biomedicines
Publication Type :
Academic Journal
Accession number :
edsdoj.065fb8ee6e4d0f86986e2d301ed3c9
Document Type :
article
Full Text :
https://doi.org/10.3390/biomedicines12010206