自闭症
错义突变
自闭症谱系障碍
神经发育障碍
生物
神经科学
功能连接
遗传学
蛋白质-蛋白质相互作用
交互网络
突变
疾病
神经发生
计算生物学
表型
智力残疾
相互作用体
发育障碍
收敛演化
拷贝数变化
神经发育
心理学
互动者
基因
变化(天文学)
作者
Belinda Wang,Rasika Vartak,Kelsey M. Hennick,Yefim Zaltsman,Zun Zar Chi Naing,Benjamin J. Polacco,Ali Bashir,Manon Eckhardt,Mehdi Bouhaddou,Jiewei Xu,Nawei Sun,Micaela Lasser,Yuan Zhou,Justin McKetney,Keelan Z. Guiley,Paweł Gniewek,Úna Chan,Naufa Amirani,Owen Griffiths,Nishant Chadha
出处
期刊:Science
[American Association for the Advancement of Science]
日期:2026-08-27
卷期号:393 (6814): eady4523-eady4523
被引量:2
标识
DOI:10.1126/science.ady4523
摘要
Systematic mapping of protein-protein interaction (PPI) networks and determining how causal mutations rewire them in autism spectrum disorder (ASD) provide a powerful framework for uncovering disease mechanisms and therapeutic opportunities. Using affinity purification-mass spectrometry, we systematically mapped PPIs for 100 high-confidence ASD genes, uncovering more than 1800 interactions. By assessing the impact of pathogenic missense mutations, leveraging AlphaFold, and validating key findings in human-derived model systems, we identified marked convergence onto shared protein complexes in the wild-type state and convergent PPI rewiring driven by independent mutations. For example, distinct patient-derived variants in FOXP1 disrupt its interactions with FOXP4, leading to changes in cortical neurogenesis and neural activity in brain organoids. Overall, these findings link genetic variation to protein networks and convergent neurodevelopmental dysfunction in ASD.
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