Circuit influences on the midbrain dopamine system are crucial to adaptive behavior and cognition. Recent developments in the study of neuropeptide systems have enabled high-resolution investigations of the intersection of neuromodulatory signals with basal ganglia circuitry, identifying the nociceptin/orphanin FQ (N/OFQ) endogenous opioid peptide system as a prospective regulator of striatal dopamine signaling. Using a prepronociceptin-Cre reporter mouse line, we characterized highly selective striosomal patterning of Pnoc mRNA expression in mouse dorsal striatum, reflecting the early developmental expression of Pnoc. In the ventral striatum, Pnoc expression in the nucleus accumbens core was grouped in clusters akin to the distribution found in striosomes. We found that Pnoc(tdTomato) reporter cells largely comprise a population of dopamine receptor D1 (Drd1) expressing medium spiny projection neurons localized in dorsal striosomes, known to be unique among striatal projection neurons for their direct innervation of midbrain dopamine neurons. These findings provide a new understanding of the intersection of the N/OFQ system among basal ganglia circuits with particular implications for developmental regulation or wiring of striato-nigral circuits.
Developmental and Adult Striatal Patterning of Nociceptin Ligand Marks Striosomal Population With Direct Dopamine Projections
痛敏肽配体的发育和成人纹状体模式通过直接多巴胺投射标记纹状体群体
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作者:Emily Hueske, Carrie Stine, Tomoko Yoshida, Jill R Crittenden, Akshay Gupta, Joseph C Johnson, Ananya S Achanta, Smitha Bhagavatula, Johnny Loftus, Ara Mahar, Dan Hu, Jesus Azocar, Ryan J Gray, Michael R Bruchas, Ann M Graybiel
| 期刊: | Journal of Comparative Neurology | 影响因子: | 2.100 |
| 时间: | 2024 | 起止号: | 2024 Dec;532(12):e70003. |
| doi: | 10.1002/cne.70003 | 种属: | Donkey |
| 方法学: | Most | 靶点: | IgG |
| 研究方向: | 发育与干细胞 | ||
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