染色质
生物
遗传学
基因
自闭症
组蛋白
表观遗传学
外显子组
外显子组测序
染色质重塑
神经发育障碍
突变
医学
精神科
作者
Silvia De Rubeis,Xin He,Arthur P. Goldberg,Christopher S. Poultney,Kaitlin E. Samocha,A. Ercüment Çiçek,Yan Kou,Li Liu,Menachem Fromer,Susan L. Walker,Tarjinder Singh,Lambertus Klei,Jack A. Kosmicki,Shih‐Chen Fu,Branko Aleksić,Monica Biscaldi,Patrick Bolton,Jessica M. Brownfeld,Jinlu Cai,Nicholas G. Campbell
出处
期刊:Nature
[Nature Portfolio]
日期:2014-10-29
卷期号:515 (7526): 209-215
被引量:2784
摘要
The genetic architecture of autism spectrum disorder involves the interplay of common and rare variants and their impact on hundreds of genes. Using exome sequencing, here we show that analysis of rare coding variation in 3,871 autism cases and 9,937 ancestry-matched or parental controls implicates 22 autosomal genes at a false discovery rate (FDR) < 0.05, plus a set of 107 autosomal genes strongly enriched for those likely to affect risk (FDR < 0.30). These 107 genes, which show unusual evolutionary constraint against mutations, incur de novo loss-of-function mutations in over 5% of autistic subjects. Many of the genes implicated encode proteins for synaptic formation, transcriptional regulation and chromatin-remodelling pathways. These include voltage-gated ion channels regulating the propagation of action potentials, pacemaking and excitability-transcription coupling, as well as histone-modifying enzymes and chromatin remodellers-most prominently those that mediate post-translational lysine methylation/demethylation modifications of histones.
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