Abstract
Dopamine is known to differentially modulate the impact of cortical input to the striatum between the direct and indirect pathways of the basal ganglia (BG). However, the role of extrastriatal dopamine receptors (DRs) in BG information processing is less clear. To investigate the role of extrastriatal DRs, we studied their distribution and function in one of the output nuclei of the BG of the rodent, the entopeduncular nucleus (EP). qRT-PCR indicated that all DR subtypes were expressed by EP neurons, suggesting that both D1-like receptors (D1LRs) andD2-like receptors (D2LRs) were likely to affect information processing in the EP. Whole-cell recordings revealed that striatal inputs to the EP were potentiated by D1LRs whereas pallidal inputs to the EP were depressed by D2LRs. Changes to the paired-pulse ratio of inputs to the EP suggested that dopaminergic modulation of striatal inputs is mediated by postsynaptic receptors, and that of globus pallidus-evoked inputs is mediated by presynaptic receptors. We show that these changes in synaptic efficacy changed the information content of EP neuron firing. Overall, the findings suggest that the dopaminergic system affects the passage of feedforward information through the BG by modulating input divergence in the striatum and output convergence in the EP.
Original language | English |
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Pages (from-to) | 7177-7187 |
Number of pages | 11 |
Journal | Journal of Neuroscience |
Volume | 37 |
Issue number | 30 |
DOIs | |
State | Published - 26 Jul 2017 |
Bibliographical note
Publisher Copyright:© 2017 the authors.
Funding
This work was supported by a grant from the Israel Science Foundation–Heritage Biomedical Science Partnership program of the Israel Science Foundation to AK and IBG (Grant 138/15), and a Paul Feder Foundation for Neurodegenerative Disorder Research grant to E.O.
Funders | Funder number |
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Paul Feder Foundation for Neurodegenerative Disorder Research | |
Israel Science Foundation | 138/15 |
Keywords
- Basal ganglia
- Dopamine
- Entopeduncular
- Entropy
- GABA
- Patch clamp
- Plasticity