Adenosine A1-Dopamine D1 Receptor Heteromers Control the Excitability of the Spinal Motoneuron

腺苷 A1-多巴胺 D1 受体异聚体控制脊髓运动神经元的兴奋性

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作者:Marla Rivera-Oliver, Estefanía Moreno, Yocasta Álvarez-Bagnarol, Christian Ayala-Santiago, Nicole Cruz-Reyes, Gian Carlo Molina-Castro, Stefan Clemens, Enric I Canela, Sergi Ferré, Vicent Casadó, Manuel Díaz-Ríos

Abstract

While the role of the ascending dopaminergic system in brain function and dysfunction has been a subject of extensive research, the role of the descending dopaminergic system in spinal cord function and dysfunction is just beginning to be understood. Adenosine plays a key role in the inhibitory control of the ascending dopaminergic system, largely dependent on functional complexes of specific subtypes of adenosine and dopamine receptors. Combining a selective destabilizing peptide strategy with a proximity ligation assay and patch-clamp electrophysiology in slices from male mouse lumbar spinal cord, the present study demonstrates the existence of adenosine A1-dopamine D1 receptor heteromers in the spinal motoneuron by which adenosine tonically inhibits D1 receptor-mediated signaling. A1-D1 receptor heteromers play a significant control of the motoneuron excitability, represent main targets for the excitatory effects of caffeine in the spinal cord and can constitute new targets for the pharmacological therapy after spinal cord injury, motor aging-associated disorders and restless legs syndrome.

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