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外显子组测序在散发孤独症病例中鉴定出 XRCC6 的新生剪接变异。

Exome sequencing identifies de novo splicing variant in XRCC6 in sporadic case of autism.

机构信息

Queen's Genomics Lab at Ongwanada (QGLO), Ongwanada Resource Center, Kingston, ON, Canada.

Department of Psychiatry, Queen's University, Kingston, ON, Canada.

出版信息

J Hum Genet. 2020 Mar;65(3):287-296. doi: 10.1038/s10038-019-0707-0. Epub 2019 Dec 12.

Abstract

Autism spectrum disorder (ASD) is a complex neurodevelopmental disorder with heterogeneity in presentation, genetic etiology, and clinical outcome. Although numerous ASD susceptibility genes have been described, they only account for a small fraction of the estimated heritability, supporting the need to identify more risk variants. This study reports the whole exome sequencing for 24 simplex families with sporadic cases of ASD. These families were selected following a rigorous family history study designed to exclude families with any history of neurodevelopmental or psychiatric disease. Fifteen rare, de novo variants, including fourteen missense variants and one splicing variant, in thirteen families were identified. We describe a splicing variant in XRCC6 which was predicted to destroy the 5' splice site in intron 9 and introduce a premature stop codon. We observed intron 9 retention in XRCC6 transcripts and reduced XRCC6 expression in the proband. Reduced XRCC6 activity and function may be relevant to ASD etiology due to XRCC6's role in nonhomologous DNA repair and interactions of the C-terminal SAP domain with DEAF1, a nuclear transcriptional regulator that is important during embryonic development.

摘要

自闭症谱系障碍(ASD)是一种复杂的神经发育障碍,其表现、遗传病因和临床结局存在异质性。尽管已经描述了许多 ASD 易感基因,但它们仅占估计遗传率的一小部分,这支持了需要识别更多风险变异的观点。本研究对 24 个具有散发性 ASD 病例的单纯型家族进行了全外显子组测序。这些家族是在经过严格的家族史研究后选择的,旨在排除任何神经发育或精神疾病病史的家族。在 13 个家族中发现了 15 个罕见的新生突变,包括 14 个错义突变和 1 个剪接突变。我们描述了一个 XRCC6 的剪接突变,该突变预测会破坏 9 号内含子的 5'剪接位点,并引入一个过早的终止密码子。我们观察到 XRCC6 转录本中存在 9 号内含子的保留,并且在先证者中 XRCC6 的表达减少。由于 XRCC6 在非同源 DNA 修复中的作用以及 C 末端 SAP 结构域与 DEAF1 的相互作用,XRCC6 的活性和功能降低可能与 ASD 的病因有关,DEAF1 是一种核转录调节剂,在胚胎发育过程中很重要。

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