生物
外显子组测序
自闭症
外显子组
遗传学
计算生物学
进化生物学
神经科学
发展心理学
突变
基因
心理学
作者
F. Kyle Satterstrom,Jack A. Kosmicki,Jiebiao Wang,Michael S. Breen,Silvia De Rubeis,Joon‐Yong An,Minshi Peng,Ryan L. Collins,Jakob Grove,Lambertus Klei,Christine Stevens,Jennifer Reichert,Maureen Mulhern,Mykyta Artomov,Sherif Gerges,Brooke Sheppard,Xinyi Xu,Aparna Bhaduri,Utku Norman,Harrison Brand
出处
期刊:Cell
[Cell Press]
日期:2020-01-23
卷期号:180 (3): 568-584.e23
被引量:2495
标识
DOI:10.1016/j.cell.2019.12.036
摘要
We present the largest exome sequencing study of autism spectrum disorder (ASD) to date (n = 35,584 total samples, 11,986 with ASD). Using an enhanced analytical framework to integrate de novo and case-control rare variation, we identify 102 risk genes at a false discovery rate of 0.1 or less. Of these genes, 49 show higher frequencies of disruptive de novo variants in individuals ascertained to have severe neurodevelopmental delay, whereas 53 show higher frequencies in individuals ascertained to have ASD; comparing ASD cases with mutations in these groups reveals phenotypic differences. Expressed early in brain development, most risk genes have roles in regulation of gene expression or neuronal communication (i.e., mutations effect neurodevelopmental and neurophysiological changes), and 13 fall within loci recurrently hit by copy number variants. In cells from the human cortex, expression of risk genes is enriched in excitatory and inhibitory neuronal lineages, consistent with multiple paths to an excitatory-inhibitory imbalance underlying ASD.
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