Evidence for limited D1 and D2 receptor coexpression and colocalization within the dorsal striatum of the neonatal mouse
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EN
Article de revue
Este ítem está publicado en
The Journal of Comparative Neurology. 2015-06-01, vol. 523, n° 8, p. 1175-1189
Resumen en inglés
The striatum is the major input nucleus of the basal ganglia involved in reward processing, goal-directed behaviors, habit learning, and motor control. The striatum projects to the basal ganglia output nuclei via the ...Leer más >
The striatum is the major input nucleus of the basal ganglia involved in reward processing, goal-directed behaviors, habit learning, and motor control. The striatum projects to the basal ganglia output nuclei via the "direct" and "indirect" pathways, which can be distinguished by their projection fields and their opposing effects on behavior. In adult animals, the functional opposition is modulated by the differential actions of D1 and D2 dopamine receptors (D1R, D2R), the expression of which is largely separated between these pathways. To determine whether a similar degree of separation exists earlier in development, we used dual-label immunohistochemistry to map dorsal-striatal D1R and D2R expression at the promoter level in postnatal day 0 (PD0) Drd1a-tdTomato/Drd2-GFP BAC transgenic mice, and at the receptor level by costaining for native D1R and D2R in wildtype (WT) PD0 animals. To assess for potential molecular interactions between D1R and D2R we also employed a recently developed proximity-ligation assay (PLA). Limited coexpression and colocalization of the D1R and D2R proteins was found in clusters of neurons endemic to the "patch" compartment as identified by costaining with tyrosine hydroxylase, but not outside these clusters. Moreover, in contrast to our recent findings where we failed to detect a D1R-D2R PLA signal in the adult striatum, in PD0 striatum we did identify a clear PLA signal for this pair of receptors. This colocalization at close proximity points to a possible role for D1R/D2R-mediated crosstalk in early striatal ontogeny.< Leer menos
Palabras clave en inglés
AB_10013483
AB_10710873
AB_1840787
AB_2079751
AB_300798
Animals
Animals
Newborn
Corpus Striatum
dopamine receptors
Fluorescent Antibody Technique
Green Fluorescent Proteins
IMSR_JAX:016204
IMSR_MMRRC:000230
matrix
Mice
Inbred C57BL
Mice
Knockout
Mice
Transgenic
Microscopy
Confocal
neonate
Neurons
nif-0000-30467
nlx_153890
patch
proximity-ligation assay
Receptors
Dopamine D1
Receptors
Dopamine D2
rid_000081
RRID: AB_11213750
striatum
Tyrosine 3-Monooxygenase
Centros de investigación