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Identification of a de novo FOXP1 mutation and incidental discovery of inherited genetic variants contributing to a case of autism spectrum disorder and epilepsy

机译:鉴定遗传遗传变异遗传遗传变异涉及自闭症谱系疾病和癫痫案例的遗传遗传变异的敏感性发现

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Background Autism spectrum disorder is commonly co‐diagnosed intellectual disability, language disorder, anxiety, and epilepsy, however, symptom management is difficult due to the complex genetic nature of ASD. Methods We present a next‐generation sequencing‐based case study with both de novo and inherited genetic variants and highlight the impact of structural variants on post‐translational regulation of protein expression. Since management of symptoms has classically been through pharmaceutical therapies, a pharmacogenomics screen was also utilized to determine possible drug/gene interactions. Results A de novo variant was identified within the FOXP1 3′ untranslated regulatory region using exome sequencing. Additionally, inherited variants that likely contribute to the current and potential future traits were identified within the COMT, SLC6A4 , CYP2C19, and CYP2D6 genes. Conclusion This study aims to elucidate how a collection of variant genotypes could potentially impact neural development resulting in a unique phenotype including ASD and epilepsy. Each gene's contribution to neural development is assessed, and the interplay of these genotypes is discussed. The results highlight the utility of exome sequencing in conjunction with pharmacogenomics screening when evaluating possible causes of and therapeutic treatments for ASD‐related symptoms.
机译:背景技术自闭症谱系疾病通常是共同诊断的智力残疾,语言障碍,焦虑和癫痫,然而,由于ASD的复杂性遗传性质,症状管理是困难的。方法我们介绍了一种与De Novo和遗传遗传变体的下一代序列的案例研究,并突出了结构变体对蛋白质表达后转化调节的影响。由于症状的管理经过药物疗法,因此还用于确定可能的药物/基因相互作用。结果使用外壳测序在FoxP1 3'未转换的调节区内鉴定了DE Novo变体。另外,在COMT,SLC6A4,CYP2C19和CYP2D6基因中鉴定了可能有助于电流和潜在未来特征的遗传变体。结论本研究旨在阐明如何收集变体基因型可能会影响神经发育,导致包括ASD和癫痫的独特表型。每种基因对神经发育的贡献得到评估,并讨论了这些基因型的相互作用。结果突出了exome测序与药物介质筛查结合在评估ASD相关症状的可能原因和治疗方法时结合药物筛选的效用。

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