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Comprehensive analysis of coding variants highlights genetic complexity in developmental and epileptic encephalopathy

机译:编码变异的综合分析突出了发育性和癫痫性脑病的遗传复杂性

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摘要

Although there are many known Mendelian genes linked to epileptic or developmental and epileptic encephalopathy (EE/DEE), its genetic architecture is not fully explained. Here, we address this incompleteness by analyzing exomes of 743 EE/DEE cases and 2366 controls. We observe that damaging ultra-rare variants (dURVs) unique to an individual are significantly overrepresented in EE/DEE, both in known EE/DEE genes and the other non-EE/DEE genes. Importantly, enrichment of dURVs in non-EE/DEE genes is significant, even in the subset of cases with diagnostic dURVs (P = 0.000215), suggesting oligogenic contribution of non-EE/DEE gene dURVs. Gene-based analysis identifies exome-wide significant (P = 2.04 × 10−6) enrichment of damaging de novo mutations in NF1, a gene primarily linked to neurofibromatosis, in infantile spasm. Together with accumulating evidence for roles of oligogenic or modifier variants in severe neurodevelopmental disorders, our results highlight genetic complexity in EE/DEE, and indicate that EE/DEE is not an aggregate of simple Mendelian disorders.
机译:尽管有许多已知的孟德尔基因与癫痫或发育性和癫痫性脑病(EE / DEE)相关,但其遗传结构尚未得到充分解释。在这里,我们通过分析743例EE / DEE病例和2366例对照的外显子组来解决此不完整问题。我们观察到,在已知的EE / DEE基因和其他非EE / DEE基因中,个体独有的破坏性超稀有变体(dURV)在EE / DEE中均明显超标。重要的是,即使在具有诊断性dURV的病例子集中,dURV在非EE / DEE基因中的富集也很重要(P = 0.000215),这表明非EE / DEE基因dURV的寡聚作用。基于基因的分析确定了婴儿痉挛症中NF1(一种主要与神经纤维瘤病相关的基因)中破坏性从头突变的显着富集(P = 2.04×10 -6 )。连同积累的证据表明,寡聚或修饰物变异在严重的神经发育障碍中的作用,我们的结果突出了EE / DEE中的遗传复杂性,并表明EE / DEE不是简单的孟德尔疾病的集合。

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