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Whole Exome Sequencing Identifies Novel De Novo Variants Interacting with Six Gene Networks in Autism Spectrum Disorder

机译:全exome测序识别与六个基因网络中的新型德诺伊型变异在自闭症谱系障碍中相互作用

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摘要

Autism spectrum disorder (ASD) is a highly heritable condition caused by a combination of environmental and genetic factors such as de novo and inherited variants, as well as rare or common variants among hundreds of related genes. Previous genome-wide association studies have identified susceptibility genes; however, most ASD-associated genes remain undiscovered. This study aimed to examine rare de novo variants to identify genetic risk factors of ASD using whole exome sequencing (WES), functional characterization, and genetic network analyses of identified variants using Korean familial dataset. We recruited children with ASD and their biological parents. The clinical best estimate diagnosis of ASD was made according to the Diagnostic and Statistical Manual of Mental Disorders (DSM-5TM), using comprehensive diagnostic instruments. The final analyses included a total of 151 individuals from 51 families. Variants were identified and filtered using the GATK Best Practices for bioinformatics analysis, followed by genome alignments and annotation to the reference genome assembly GRCh37 (liftover to GRCh38), and further annotated using dbSNP 154 build databases. To evaluate allele frequencies of de novo variants, we used the dbSNP, gnomAD exome v2.1.1, and genome v3.0. We used Ingenuity Pathway Analysis (IPA, Qiagen) software to construct networks using all identified de novo variants with known autism-related genes to find probable relationships. We identified 36 de novo variants with potential relations to ASD; 27 missense, two silent, one nonsense, one splice region, one splice site, one 5′ UTR, and one intronic SNV and two frameshift deletions. We identified six networks with functional relationships. Among the interactions between de novo variants, the IPA assay found that the NF-κB signaling pathway and its interacting genes were commonly observed at two networks. The relatively small cohort size may affect the results of novel ASD genes with de novo variants described in our findings. We did not conduct functional experiments in this study. Because of the diversity and heterogeneity of ASD, the primary purpose of this study was to investigate probable causative relationships between novel de novo variants and known autism genes. Additionally, we based functional relationships with known genes on network analysis rather than on statistical analysis. We identified new variants that may underlie genetic factors contributing to ASD in Korean families using WES and genetic network analyses. We observed novel de novo variants that might be functionally linked to ASD, of which the variants interact with six genetic networks.
机译:自闭症谱系障碍(ASD)是由诸如De Novo和遗传因素的环境和遗传因素组合引起的高度遗传状态,以及数百个相关基因中的稀有或常见变体。以前的基因组 - 宽协会研究已经确定了易感基因;然而,大多数ASD相关基因仍未被发现。本研究旨在检查使用韩国家族数据集的全外壳测序(WES),功能表征和鉴定变体的功能表征和遗传网络分析的稀有De Novo变体。我们招募有ASD及其生物父母的儿童。使用综合诊断仪器,根据精神障碍(DSM-5TM)的诊断和统计手册进行ASD的临床最佳估算诊断。最终分析包括来自51个家庭的总共151个个体。使用GATK最佳实践来识别和过滤变体,然后使用GATK最佳实践进行生物信息化学分析,然后是基因组对准和向参考基因组组件GRCH37(升降到GRCH38)进行注释,并使用DBSNP 154构建数据库进一步注释。为了评估De Novo变体的等位基因频率,我们使用DBSNP,Gnomad Exome V2.1.1和Genome V3.0。我们使用了使用具有已知自闭症相关基因的所有识别的De Novo变体来构建网络的Ingenuity途径分析(IPA,Qiagen)软件来构建网络。我们确定了36名博物群体与ASD的潜在关系; 27麦克信,两个沉默,一个废话,一个拼接区域,一个接头位点,一个5'UTR和一个内读SNV和两个帧缺失。我们确定了六个功能关系的网络。在De Novo变体之间的相互作用中,IPA测定发现NF-κB信号传导途径及其相互作用基因在两个网络中观察。相对较小的群组大小可能影响新的ASD基因的结果与我们的研究结果中描述的de Novo变体。我们在本研究中没有进行功能实验。由于ASD的多样性和异质性,本研究的主要目的是研究新的De Novo变体和已知的自闭症基因之间可能的致病关系。此外,我们基于网络分析的已知基因的功能关系,而不是在统计分析上。我们确定了使用WES和遗传网络分析的韩国家庭中为ASD提供遗传因素的新变种。我们观察到可能与ASD有效相关的新型Novo变体,该变体与六个遗传网络相互作用。

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