生物
基因
自闭症
遗传学
计算生物学
Wnt信号通路
蛋白质组学
自闭症谱系障碍
疾病
生物信息学
神经科学
医学
病理
精神科
作者
Nadeem Murtaza,Annie A. Cheng,Chad O. Brown,Durga Praveen Meka,Shuai Hong,Jarryll A. Uy,Joelle El-Hajjar,Neta Pipko,Brianna K. Unda,Birgit Schwanke,Sansi Xing,Bhooma Thiruvahindrapuram,Worrawat Engchuan,Brett Trost,Éric Deneault,Froylán Calderón de Anda,Bradley W. Doble,James Ellis,Evdokia Anagnostou,Gary D. Bader,Stephen W. Scherer,Yu Lu,Karun K. Singh
出处
期刊:Cell Reports
[Elsevier]
日期:2022-11-01
卷期号:41 (8): 111678-111678
被引量:28
标识
DOI:10.1016/j.celrep.2022.111678
摘要
There are hundreds of risk genes associated with autism spectrum disorder (ASD), but signaling networks at the protein level remain unexplored. We use neuron-specific proximity-labeling proteomics (BioID2) to identify protein-protein interaction (PPI) networks for 41 ASD risk genes. Neuron-specific PPI networks, including synaptic transmission proteins, are disrupted by de novo missense variants. The PPI network map reveals convergent pathways, including mitochondrial/metabolic processes, Wnt signaling, and MAPK signaling. CRISPR knockout displays an association between mitochondrial activity and ASD risk genes. The PPI network shows an enrichment of 112 additional ASD risk genes and differentially expressed genes from postmortem ASD patients. Clustering of risk genes based on PPI networks identifies gene groups corresponding to clinical behavior score severity. Our data report that cell type-specific PPI networks can identify individual and convergent ASD signaling networks, provide a method to assess patient variants, and highlight biological insight into disease mechanisms and sub-cohorts of ASD.
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