Skip to Main Content (Press Enter)

Logo UNIPV
  • ×
  • Home
  • Corsi
  • Insegnamenti
  • Professioni
  • Persone
  • Pubblicazioni
  • Strutture

UNIFIND
Logo UNIPV

|

UNIFIND

unipv.it
  • ×
  • Home
  • Corsi
  • Insegnamenti
  • Professioni
  • Persone
  • Pubblicazioni
  • Strutture
  1. Pubblicazioni

Distinct roles of D1 and D5 dopamine receptors in motor activity and striatal synaptic plasticity

Articolo
Data di Pubblicazione:
2003
Abstract:
Stimulation of dopamine (DA) receptors in the striatum is essential for voluntary motor activity and for the generation of plasticity at corticostriatal synapses. In the present study, mice lacking DA D1 receptors have been used to investigate the involvement of the D1-like class (D1 and D5) of DA receptors in locomotion and corticostriatal long-term depression (LTD) and long-term potentiation (LTP). Our results suggest that D1 and D5 receptors exert distinct actions on both activity-dependent synaptic plasticity and spontaneous motor activity. Accordingly, the ablation of D1 receptors disrupted corticostriatal LTP, whereas pharmacological blockade of D5 receptors prevented LTD. On the other side, genetic ablation of D1 receptors increased locomotor activity, whereas the D1/D5 receptor antagonist SCH 23390 decreased motor activity in both control mice and mice lacking D1 receptors. Endogenous DA stimulated D1 and D5 receptors in distinct subtypes of striatal neurons to induce, respectively, LTP and LTD. In control mice, in fact, LTP was blocked by inhibiting the D1-protein kinase A pathway in the recorded spiny neuron, whereas the striatal nitric oxide-producing interneuron was presumably the neuronal subtype stimulated by D5 receptors during the induction phase of LTD. Understanding the role of DA receptors in striatal function is essential to gain insights into the neural bases of critical brain functions and of dramatic pathological conditions such as Parkinson's disease, schizophrenia, and drug addiction.
Tipologia CRIS:
1.1 Articolo in rivista
Keywords:
Dopamine Antagonists; Corpus Striatum; Male; Synapses; Cyclic AMP-Dependent Protein Kinases; Cyclic GMP; Mice; Knockout; Receptors; Dopamine D5; Animals; Interneurons; Receptors; Dopamine D1; Patch-Clamp Techniques; Motor Activity; Cerebral Cortex; Enzyme Inhibitors; Neuronal Plasticity; Action Potentials; Nitric Oxide; Neurons; Mice; Long-Term Potentiation; Long-Term Synaptic Depression
Elenco autori:
Centonze, Diego; Grande, C; Saulle, E; Martin, A; Gubellini, P; Pavón, N; Pisani, Antonio; Bernardi, Giorgio; Moratalla, R; Calabresi, Paolo
Autori di Ateneo:
PISANI ANTONIO
Link alla scheda completa:
https://iris.unipv.it/handle/11571/1352442
Pubblicato in:
THE JOURNAL OF NEUROSCIENCE
Journal
  • Dati Generali

Dati Generali

URL

https://www.jneurosci.org/content/23/24/8506.long
  • Utilizzo dei cookie

Realizzato con VIVO | Designed by Cineca | 26.5.1.0