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HMZDupFinder:一种从外显子组测序数据中检测基因内纯合重复的强大计算方法。

HMZDupFinder: a robust computational approach for detecting intragenic homozygous duplications from exome sequencing data.

机构信息

Department of Molecular and Human Genetics, Baylor College of Medicine, Houston, TX 77030, USA.

Human Genome Sequencing Center, Baylor College of Medicine, Houston, TX 77030, USA.

出版信息

Nucleic Acids Res. 2024 Feb 28;52(4):e18. doi: 10.1093/nar/gkad1223.

Abstract

Homozygous duplications contribute to genetic disease by altering gene dosage or disrupting gene regulation and can be more deleterious to organismal biology than heterozygous duplications. Intragenic exonic duplications can result in loss-of-function (LoF) or gain-of-function (GoF) alleles that when homozygosed, i.e. brought to homozygous state at a locus by identity by descent or state, could potentially result in autosomal recessive (AR) rare disease traits. However, the detection and functional interpretation of homozygous duplications from exome sequencing data remains a challenge. We developed a framework algorithm, HMZDupFinder, that is designed to detect exonic homozygous duplications from exome sequencing (ES) data. The HMZDupFinder algorithm can efficiently process large datasets and accurately identifies small intragenic duplications, including those associated with rare disease traits. HMZDupFinder called 965 homozygous duplications with three or less exons from 8,707 ES with a recall rate of 70.9% and a precision of 16.1%. We experimentally confirmed 8/10 rare homozygous duplications. Pathogenicity assessment of these copy number variant alleles allowed clinical genomics contextualization for three homozygous duplications alleles, including two affecting known OMIM disease genes EDAR (MIM# 224900), TNNT1(MIM# 605355), and one variant in a novel candidate disease gene: PAAF1.

摘要

纯合重复通过改变基因剂量或破坏基因调控导致遗传疾病,并且比杂合重复对生物体生物学更具危害性。基因内外显子重复可导致功能丧失(LoF)或功能获得(GoF)等位基因,当纯合时,即通过同源性或状态在一个基因座上达到纯合状态,可能导致常染色体隐性(AR)罕见疾病特征。然而,从外显子组测序数据中检测和功能解释纯合重复仍然是一个挑战。我们开发了一种框架算法 HMZDupFinder,用于从外显子组测序(ES)数据中检测外显子纯合重复。HMZDupFinder 算法可以有效地处理大型数据集,并准确识别小的基因内重复,包括与罕见疾病特征相关的重复。HMZDupFinder 从 8707 个 ES 中调用了 965 个具有三个或更少外显子的纯合重复,召回率为 70.9%,精度为 16.1%。我们实验验证了 10 个罕见纯合重复中的 8 个。对这些拷贝数变异等位基因的致病性评估允许对三个纯合重复等位基因进行临床基因组学背景分析,包括两个影响已知 OMIM 疾病基因 EDAR(MIM#224900)和 TNNT1(MIM#605355)的等位基因,以及一个在新候选疾病基因 PAAF1 中的变体。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/11eb/10899794/987fa63ec82e/gkad1223figgra1.jpg

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