Endothelial SHANK3 regulates tight junctions in the neonatal mouse blood-brain barrier through β-Catenin signaling

Citations

WEB OF SCIENCE

14
Citations

SCOPUS

0

초록

Autism spectrum disorder (ASD) is a neurodevelopmental disability condition arising from a combination of genetic and environmental factors. Despite the blood-brain barrier (BBB) serving as a crucial gatekeeper, conveying environmental influences into the brain parenchyma, the contributions of BBB in ASD pathogenesis remain largely uncharted. Here we report that SHANK3, an ASD-risk gene, expresses in the BBB-forming brain endothelial cells (BECs) and regulates tight junctional (TJ) integrity essential for BBB's barrier function. Endothelium-specific Shank3 (eShank3) knockout (KO) neonatal mice exhibit male-specific BBB-hyperpermeability, reduced neuronal excitability, and impaired ultra-sonic communications. Although BBB permeability is restored during adult age, the male mutant mice display reduced neuronal excitability and impaired sociability. Further analysis reveals that the BBB-hyperpermeability is attributed to the beta-Catenin imbalance triggered by eShank3-KO. These findings highlight a pathogenic mechanism stemming from the ASD-risk Shank3, emphasizing the significance of neonatal BECs in the BBB as a potential therapeutic target for ASD.

키워드

AUTISM; PROTEINS; ROLES; MICE; BEHAVIORS; MUTATIONS; CLAUDINS; SYNAPSE; TARGET; MODEL
제목
Endothelial SHANK3 regulates tight junctions in the neonatal mouse blood-brain barrier through β-Catenin signaling
저자
Kim, Yong-Eun; Kim, Minseong; Kim, Sunwhi; Lee, Raham; Ujihara, Yusuke; Marquez-Wilkins, Esther Magdalena; Jiang, Yong-Hui; Yang, Esther; Kim, Hyun; Lee, Changhoon; Park, Changwon; Kim, Il Hwan
DOI
10.1038/s41467-025-56720-1
발행일
2025-02
유형
Article
저널명
Nature Communications
권
16
호
1