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Identification of small exonic CNV from whole-exome sequence data and application to autism spectrum disorder

机译:从全exome序列数据和应用到自闭症谱系疾病中的小外消除CNV

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摘要

Copy number variation (CNV) is an important determinant of human diversity and plays important roles in susceptibility to disease. Most studies of CNV carried out to date have made use of chromosome microarray and have had a lower size limit for detection of about 30 kilobases (kb). With the emergence of whole-exome sequencing studies, we asked whether such data could be used to reliably call rare exonic CNV in the size range of 1-30 kilobases (kb), making use of the eXome Hidden Markov Model (XHMM) program. By using both transmission information and validation by molecular methods, we confirmed that small CNV encompassing as few as three exons can be reliably called from whole-exome data. We applied this approach to an autism case-control sample (n = 811, mean per-target read depth = 161) and observed a significant increase in the burden of rare (MAF ≤1%) 1-30 kb CNV, 1-30 kb deletions, and 1-10 kb deletions in ASD. CNV in the 1-30 kb range frequently hit just a single gene, and we were therefore able to carry out enrichment and pathway analyses, where we observed enrichment for disruption of genes in cytoskeletal and autophagy pathways in ASD. In summary, our results showed that XHMM provided an effective means to assess small exonic CNV from whole-exome data, indicated that rare 1-30 kb exonic deletions could contribute to risk in up to 7% of individuals with ASD, and implicated a candidate pathway in developmental delay syndromes.
机译:拷贝数变异(CNV)是人类多样性的重要决定因素,并在对疾病的易感性中起重要作用。迄今为止进行的大多数CNV的研究已经使用染色体微阵列,并且检测约30千碱基(KB)具有较小的尺寸限制。随着全体exome测序研究的出现,我们询问此类数据是否可用于可靠地称为稀有偏见的CNV,尺寸范围为1-30千杆(KB),利用Exome隐马尔可夫模型(XHMM)程序。通过使用分子方法的传输信息和验证,我们确认可以从全极端数据中可靠地调用小于三个外显子的小型CNV。我们将这种方法应用于自闭症案例控制样品(n = 811,平均每目标读取深度= 161),并且观察到罕见的稀有(MAF≤1%)1-30 kB CNV,1-30的重大增加KB删除,ASD中的1-10 kB删除。 CNV在1-30 kB范围内经常击中单个基因,因此我们能够进行富集和途径分析,在那里我们观察到ASD中细胞骨骼和自噬途径中断的富集。总之,我们的结果表明,XHMM提供了从全极端数据评估小外偏振CNV的有效手段,表明罕见的1-30kb封面缺失可能导致高达7%的人患有ASD的人,并涉及候选人发展延迟综合征的途径。

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    Seaver Autism Center for Research and Treatment Icahn School of Medicine at Mount Sinai New York;

    Seaver Autism Center for Research and Treatment Icahn School of Medicine at Mount Sinai New York;

    Seaver Autism Center for Research and Treatment Icahn School of Medicine at Mount Sinai New York;

    Seaver Autism Center for Research and Treatment Icahn School of Medicine at Mount Sinai New York;

    Seaver Autism Center for Research and Treatment Icahn School of Medicine at Mount Sinai New York;

    Seaver Autism Center for Research and Treatment Icahn School of Medicine at Mount Sinai New York;

    Seaver Autism Center for Research and Treatment Icahn School of Medicine at Mount Sinai New York;

    Seaver Autism Center for Research and Treatment Icahn School of Medicine at Mount Sinai New York;

    Program in Medical and Population Genetics Broad Institute of MIT and Harvard Cambridge MA 02142;

    Institute for Molecular Medicine Finland (FIMM) University of Helsinki 00290 Helsinki Finland;

    Program in Medical and Population Genetics Broad Institute of MIT and Harvard Cambridge MA 02142;

    Program in Medical and Population Genetics Broad Institute of MIT and Harvard Cambridge MA 02142;

    Department of Pharmacology and Systems Therapeutics Systems Biology Center New York (SBCNY) Icahn;

    Department of Psychiatry Icahn School of Medicine at Mount Sinai New York NY 10029 United;

    Seaver Autism Center for Research and Treatment Icahn School of Medicine at Mount Sinai New York;

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  • 中图分类 医学遗传学;
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