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对116个自闭症家庭的基因组分析强化了已知的风险基因,并突出了有潜力的候选基因。

Genomic analysis of 116 autism families strengthens known risk genes and highlights promising candidates.

作者信息

Viggiano Marta, Ceroni Fabiola, Visconti Paola, Posar Annio, Scaduto Maria Cristina, Sandoni Laura, Baravelli Irene, Cameli Cinzia, Rochat Magali J, Maresca Alessandra, Vaisfeld Alessandro, Gentilini Davide, Calzari Luciano, Carelli Valerio, Zody Michael C, Maestrini Elena, Bacchelli Elena

机构信息

Department of Pharmacy and Biotechnology, University of Bologna, Bologna, Italy.

Faculty of Health and Life Sciences, Oxford Brookes University, Oxford, UK.

出版信息

NPJ Genom Med. 2024 Mar 22;9(1):21. doi: 10.1038/s41525-024-00411-1.

Abstract

Autism spectrum disorder (ASD) is a complex neurodevelopmental condition with a strong genetic component in which rare variants contribute significantly to risk. We performed whole genome and/or exome sequencing (WGS and WES) and SNP-array analysis to identify both rare sequence and copy number variants (SNVs and CNVs) in 435 individuals from 116 ASD families. We identified 37 rare potentially damaging de novo SNVs (pdSNVs) in the cases (n = 144). Interestingly, two of them (one stop-gain and one missense variant) occurred in the same gene, BRSK2. Moreover, the identification of 8 severe de novo pdSNVs in genes not previously implicated in ASD (AGPAT3, IRX5, MGAT5B, RAB8B, RAP1A, RASAL2, SLC9A1, YME1L1) highlighted promising candidates. Potentially damaging CNVs (pdCNVs) provided support to the involvement of inherited variants in PHF3, NEGR1, TIAM1 and HOMER1 in neurodevelopmental disorders (NDD), although mostly acting as susceptibility factors with incomplete penetrance. Interpretation of identified pdSNVs/pdCNVs according to the ACMG guidelines led to a molecular diagnosis in 19/144 cases, although this figure represents a lower limit and is expected to increase thanks to further clarification of the role of likely pathogenic variants in ASD/NDD candidate genes not yet established. In conclusion, our study highlights promising ASD candidate genes and contributes to characterize the allelic diversity, mode of inheritance and phenotypic impact of de novo and inherited risk variants in ASD/NDD genes.

摘要

自闭症谱系障碍(ASD)是一种复杂的神经发育疾病,具有很强的遗传成分,其中罕见变异对风险有显著贡献。我们进行了全基因组和/或外显子组测序(WGS和WES)以及SNP阵列分析,以识别来自116个ASD家庭的435名个体中的罕见序列和拷贝数变异(SNV和CNV)。我们在病例组(n = 144)中鉴定出37个罕见的潜在有害新生SNV(pdSNV)。有趣的是,其中两个(一个无义突变和一个错义变异)发生在同一基因BRSK2中。此外,在先前未涉及ASD的基因(AGPAT3、IRX5、MGAT5B、RAB8B、RAP1A、RASAL2、SLC9A1、YME1L1)中鉴定出8个严重的新生pdSNV,突出了有前景的候选基因。潜在有害CNV(pdCNV)为PHF3、NEGR1、TIAM1和HOMER1中遗传变异参与神经发育障碍(NDD)提供了支持,尽管它们大多作为具有不完全外显率的易感性因素起作用。根据美国医学遗传学与基因组学学会(ACMG)指南对鉴定出的pdSNV/pdCNV进行解读,在19/144例病例中得出了分子诊断结果,尽管这个数字只是下限,并且由于尚未确定的ASD/NDD候选基因中可能致病变异的作用得到进一步阐明,预计这一数字会增加。总之,我们的研究突出了有前景的ASD候选基因,并有助于表征ASD/NDD基因中新生和遗传风险变异的等位基因多样性、遗传模式和表型影响。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/b448/10959942/4986b66191e2/41525_2024_411_Fig1_HTML.jpg

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