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Indirect pathway neurons in the tail of the striatum regulate inhibitory control over sensory driven behavior.

Created on 01 Aug 2026

Authors

Sarah M Ferrigno, Evan Iliakis, Nathan Zhang, Saurabh Pandey, Jamie Galanaugh, Jonibek Muhsinov, Marc V Fuccillo

Published in

Science advances. Volume 12. Issue 31. Pages eaeb5352. Jul 31, 2026. Epub Jul 31, 2026.

Abstract

Inhibitory control, the ability to withhold action in certain contexts, is behaviorally essential. Disrupted inhibitory control is linked to various neuropsychiatric symptoms, making it critical to understand the underlying neural basis. We examined how the tail of the striatum (TS), a major basal ganglia sensory hub, regulates actions to sensory stimuli. Mice performed an auditory Go/NoGo task, while we recorded TS neuron activity. Both spiny neuron subtypes were recruited during target and nontarget sounds, but nontarget sounds uniquely engaged persistent indirect pathway neuron activity. Temporarily silencing this activity increased errors to nontarget stimuli, indicating a role in suppressing inappropriate action. In mice deficient for Neurexin1α, a gene linked to ASD and ADHD, TS indirect pathway recruitment was reduced, and these mice demonstrated auditory-specific inhibitory control deficits that were ameliorated by boosting indirect pathway excitability. These findings highlight a subcortical target to potentially improve attentional and behavioral regulation in neurodevelopmental disorders.

PMID:
42536750
Bibliographic data and abstract were imported from PubMed on 01 Aug 2026.

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