Whole-genome sequencing analysis of Japanese autism spectrum disorder trios.

IF 5 3区 医学 Q1 CLINICAL NEUROLOGY Psychiatry and Clinical Neurosciences Pub Date : 2024-11-28 DOI:10.1111/pcn.13767
Sawako Furukawa, Itaru Kushima, Hidekazu Kato, Hiroki Kimura, Yoshihiro Nawa, Branko Aleksic, Masahiro Banno, Maeri Yamamoto, Mariko Uematsu, Yukako Nagasaki, Tomoo Ogi, Norio Ozaki, Masashi Ikeda
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Abstract

Aim: Autism spectrum disorder (ASD) is a genetically and phenotypically heterogeneous neurodevelopmental disorder with a strong genetic basis. Conducting the first comprehensive whole-genome sequencing (WGS) analysis of Japanese ASD trios, this study aimed to elucidate the clinical significance of pathogenic variants and enhance the understanding of ASD pathogenesis.

Methods: WGS was performed on 57 Japanese patients with ASD and their parents, investigating variants ranging from single-nucleotide variants to structural variants (SVs), short tandem repeats (STRs), mitochondrial variants, and polygenic risk score (PRS).

Results: Potentially pathogenic variants that could explain observed phenotypes were identified in 18 patients (31.6%) overall and in 10 of 23 patients (43.5%) with comorbid intellectual developmental disorder (IDD). De novo variants in PTEN, CHD7, and HNRNPH2 were identified in patients referred for genetic counseling who exhibited previously reported phenotypes, including one patient with ASD who had profound IDD and macrocephaly with PTEN L320S. Analysis of the AlphaFold3 protein structure indicated potential inhibition of intramolecular interactions within PTEN. SV analysis identified deletions in ARHGAP11B and TMLHE. A pathogenic de novo mitochondrial variant was identified in a patient with ASD who had a history of encephalitis and cognitive decline. GO enrichment analysis of genes with nonsense variants and missense variants (Missense badness, PolyPhen-2, and Constraint >1) showed associations with regulation of growth and ATP-dependent chromatin remodeler activity. No reportable results were obtained in the analysis of STR and PRS.

Conclusion: Characterizing the comprehensive genetic architecture and phenotypes of ASD is a fundamental step towards unraveling its complex biology.

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日本自闭症谱系障碍三人组全基因组测序分析。
目的:自闭症谱系障碍(ASD)是一种遗传和表型异质性的神经发育障碍,具有很强的遗传基础。本研究首次对日本ASD三人组进行全面的全基因组测序(WGS)分析,旨在阐明致病变异的临床意义,增强对ASD发病机制的认识。方法:对57名日本ASD患者及其父母进行WGS,研究从单核苷酸变异到结构变异(SVs)、短串联重复序列(STRs)、线粒体变异和多基因风险评分(PRS)的变异。结果:在总共18例(31.6%)患者和23例共病智力发育障碍(IDD)患者中的10例(43.5%)中发现了可以解释观察到的表型的潜在致病变异。PTEN、CHD7和HNRNPH2的新生变异在先前报道的表型的遗传咨询患者中被发现,包括一名患有重度IDD和大头畸形的ASD患者,PTEN l320。对AlphaFold3蛋白结构的分析表明,它可能抑制PTEN分子内相互作用。SV分析发现ARHGAP11B和TMLHE基因缺失。在一名有脑炎和认知能力下降史的ASD患者中发现了一种致病性从头线粒体变异。无义变异体和错义变异体(missense bad、polyphen2和Constraint >1)基因的氧化石墨烯富集分析显示,氧化石墨烯与生长调节和atp依赖性染色质重塑酶活性有关。STR和PRS分析未见可报告的结果。结论:全面表征ASD的遗传结构和表型是揭示其复杂生物学的基础步骤。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
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来源期刊
CiteScore
7.40
自引率
4.20%
发文量
181
审稿时长
6-12 weeks
期刊介绍: PCN (Psychiatry and Clinical Neurosciences) Publication Frequency: Published 12 online issues a year by JSPN Content Categories: Review Articles Regular Articles Letters to the Editor Peer Review Process: All manuscripts undergo peer review by anonymous reviewers, an Editorial Board Member, and the Editor Publication Criteria: Manuscripts are accepted based on quality, originality, and significance to the readership Authors must confirm that the manuscript has not been published or submitted elsewhere and has been approved by each author
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