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Publication : Dopaminergic regulation of vestibulo-cerebellar circuits through unipolar brush cells.

First Author  Canton-Josh JE Year  2022
Journal  Elife Volume  11
PubMed ID  35476632 Mgi Jnum  J:325633
Mgi Id  MGI:7278287 Doi  10.7554/eLife.76912
Citation  Canton-Josh JE, et al. (2022) Dopaminergic regulation of vestibulo-cerebellar circuits through unipolar brush cells. Elife 11:e76912
abstractText  While multiple monoamines modulate cerebellar output, the mechanistic details of dopaminergic signaling in the cerebellum remain poorly understood. We show that dopamine type 1 receptors (Drd1) are expressed in unipolar brush cells (UBCs) of the mouse cerebellar vermis. Drd1 activation increases UBC firing rate and post-synaptic NMDAR -mediated currents. Using anatomical tracing and in situ hybridization, we test three hypotheses about the source of cerebellar dopamine. We exclude midbrain dopaminergic nuclei and tyrosine hydroxylase-positive Purkinje (Pkj) cells as potential sources, supporting the possibility of dopaminergic co-release from locus coeruleus (LC) axons. Using an optical dopamine sensor GRABDA2h, electrical stimulation, and optogenetic activation of LC fibers in the acute slice, we find evidence for monoamine release onto Drd1-expressing UBCs. Altogether, we propose that the LC regulates cerebellar cortex activity by co-releasing dopamine onto UBCs to modulate their response to cerebellar inputs. Pkj cells directly inhibit these Drd1-positive UBCs, forming a dopamine-sensitive recurrent vestibulo-cerebellar circuit.
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