Date Published:
2026 Sep

Publication Type:
Journal Article

Authors:

Raleigh M Linville
Benjamin T James
Kyriaki Galani
Li-Lun Ho
Jung Hoon Shin
Esaria Oliver
Stuart B Fass
James C Cameron
Brent E Fitzwater
Roland Bock
Erin M Murray
Mathilde Louçã
Oluwamayowa Oke
Charlotte Wang
Erica Engelberg-Cook
Michael DeTure
Vanessa Farrell
Sergio Sebastian Pineda
Suphinya Sathitloetsakun
Xinyue Liang
Bertha Madras
Dennis W Dickson
Deborah C Mash
Gustavo Turecki
Vanessa C Wheeler
Veronica A Alvarez
Dana Gabuzda
Manolis Kellis
Myriam Heiman

PMID:
42679819

URL:
https://pubmed.ncbi.nlm.nih.gov/42679819/

DOI:
10.1016/j.cell.2026.08.006

Abstract:
The striatum is critical for decision-making, movement, and reward processing, functions achieved through subregional cellular and molecular specialization. Striatal cell types and subregions are differentially implicated in neurodegenerative and neuropsychiatric disorders, but the mechanisms underlying these vulnerabilities are poorly understood. Using single-nucleus RNA sequencing across 109 human and 22 mouse samples spanning dorsal and ventral striatum, we provide a comprehensive atlas of subregional neuronal specialization. We define rare neuronal subpopulations and transcriptional gradients along the dorsolateral-ventromedial axis with notable differences between species, suggesting divergent pharmacological targets, connectivity, and disease mechanisms. Integration with genome-wide association and pharmacological studies identifies human-enriched sites of opioid receptor expression and ventral-biased chronic antipsychotic action. Lastly, paired single-cell transcriptomic and somatic trinucleotide repeat expansion measurements identify differences in subregion and neuronal subtype vulnerability in Huntington's disease. Our findings lay the foundation for understanding how striatal cell types and subregions contribute to brain function and neurological disorders.