Potentiation of Nigra–Striatal Dopaminergic Projection Underpins Core Autism-Like Behaviors in Valproate-Exposed Mice

Q Qi Zheng Y Yongsi Zhao Q Qiangqiang Cheng (School of Psychology, Shaanxi Normal University) H Hao Wang (Division of Quantitative Sciences, Department of Oncology Johns Hopkins University School of Medicine Baltimore Maryland USA) F Fuhong Liu J Jingru Lai Y Yaqi Liu X Xinyuan Zhang Y Yifan Kang Z Zhongqi Li B Bing Cao C Chunling Wei (Key Laboratory of Modern Teaching Technology, Ministry of Education, Shaanxi Normal University) Z Zhaoqiang Qian (Key Laboratory of Modern Teaching Technology, Ministry of Education, Shaanxi Normal University) J Juan Fan W Wei Ren (College of Energy Materials and Chemistry) Y Yingfang Tian

Abstract

Autism is characterized by two key diagnostic criteria including social deficits and repetitive behaviors. However, the underlying neural circuit dysfunction that accounts for these coexisting symptoms in autism remains poorly understood. Here we revealed that prenatal valproate exposure induced functional alterations of dopaminergic projections from substantia nigra pars compacta (SNc) to dorsomedial striatum (DMS). Specifically, we observed enhanced excitatory input and increased excitability in SNc→DMS dopamine (DA) neurons, resulting in a basal state of potentiation. This potentiated baseline activity blunted the phasic responses of SNc→DMS projections, as evidenced by reduction of transient Ca2+ and DA signaling during social interaction and expression of repetitive behaviors in valproate-exposed male mice. We then utilized chronic chemogenetic and optogenetic approaches to selectively manipulate the abnormal basal activity of SNc→DMS dopaminergic signaling. This targeted intervention successfully rectified the dysfunction in D1R-expressed medium spiny neurons (D1-MSNs) associated with social deficits, while simultaneously restoring the functionality of D2-MSNs linked to repetitive behaviors. Collectively, our findings support the hypothesis that prenatal valproate exposure disrupts SNc→DMS dopaminergic signaling, which mediates the coexistence of two core autism-like behaviors by reshaping the dynamics of direct and indirect pathway MSNs. Moreover, these results highlight potential therapeutic targets for developing interventions for both core symptoms of autism.

Article Details

Volume / Issue Vol. 45, Issue 36
Published September 03, 2025
Pages e0382252025
ISSN 0270-6474
Publisher Society for Neuroscience

Journal Info

Journal of Neuroscience

Society for Neuroscience

ISSN: 0270-6474 Life Sciences

Authors (16)

Q

Qi Zheng

Y

Yongsi Zhao

Q

Qiangqiang Cheng

School of Psychology, Shaanxi Normal University

H

Hao Wang

Division of Quantitative Sciences, Department of Oncology Johns Hopkins University School of Medicine Baltimore Maryland USA

F

Fuhong Liu

J

Jingru Lai

Y

Yaqi Liu

X

Xinyuan Zhang

Y

Yifan Kang

Z

Zhongqi Li

B

Bing Cao

C

Chunling Wei

Key Laboratory of Modern Teaching Technology, Ministry of Education, Shaanxi Normal University

Z

Zhaoqiang Qian

Key Laboratory of Modern Teaching Technology, Ministry of Education, Shaanxi Normal University

J

Juan Fan

W

Wei Ren

College of Energy Materials and Chemistry

Y

Yingfang Tian