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Brain-expressed exons under purifying selection are enriched for de novo mutations in autism spectrum disorder

机译:纯化选择下的脑表达外显子丰富了自闭症谱系障碍的从头突变

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A universal challenge in genetic studies of autism spectrum disorders (ASDs) is determining whether a given DNA sequence alteration will manifest as disease. Among different population controls, we observed, for specific exons, an inverse correlation between exon expression level in brain and burden of rare missense mutations. For genes that harbor de novo mutations predicted to be deleterious, we found that specific critical exons were significantly enriched in individuals with ASD relative to their siblings without ASD (P 1.13 × 10-38; odds ratio (OR) = 2.40). Furthermore, our analysis of genes with high exonic expression in brain and low burden of rare mutations demonstrated enrichment for known ASD-associated genes (P 3.40 × 10-11; OR = 6.08) and ASD-relevant fragile-X protein targets (P 2.91 × 10-157; OR = 9.52). Our results suggest that brain-expressed exons under purifying selection should be prioritized in genotype-phenotype studies for ASD and related neurodevelopmental conditions.
机译:自闭症谱系障碍(ASD)遗传学研究中的一个普遍挑战是确定给定的DNA序列改变是否会表现为疾病。在不同的种群控制中,对于特定的外显子,我们观察到大脑中外显子表达水平与罕见错义突变负担之间呈负相关。对于带有从头突变的基因,这些基因被预测为有害的,我们发现,与没有ASD的兄弟姐妹相比,具有ASD的个体中的特定关键外显子显着富集(P <1.13×10-38;优势比(OR)= 2.40)。此外,我们对脑中外显子表达高,罕见突变负担低的基因的分析表明,已知的ASD相关基因(P <3.40×10-11; OR = 6.08)和与ASD相关的脆性X蛋白靶点(P <2.91×10-157; OR = 9.52)。我们的结果表明,在针对ASD和相关神经发育状况的基因型-表型研究中,应优先选择纯化表达下的脑表达外显子。

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