Exploring the Potential of Exome Sequencing in Idiopathic Azoospermia: A Genetic Burden and Network Analysis Study

IF 2.1 4区 医学 Q3 ANDROLOGY
Andrologia Pub Date : 2023-08-17 DOI:10.1155/2023/3107568
Baiba Alkšere, Agrita Puzuka, Marija Lazovska, Ninel Miriam Vainselbaum, Jānis Kristaps Vasiļonoks, Elvita Penka, Violeta Fodina, Juris Ērenpreiss
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Abstract

The purpose of this study was to investigate the linkage of the association of azoospermia phenotype with genetic alterations, involved in genome instability. Male infertility is a multifactorial pathology, and genetic alterations might be the underlying factors in majority of cases of severe male infertility. The recent emergence of next-generation sequencing offers an opportunity to analyze many genes and their interactions at once, and whole-exome sequencing (WES) together with whole-genome sequencing (WGS) was recently suggested for implementation of diagnosis workup in severe infertility cases. However, the reports on WES in conjunction with burden tests and gene network analysis are scarce or lacking in cases of severe male infertility. WES was performed on 21 nonobstructive azoospermia patients. DNA samples were sequenced using the Twist Comprehensive Exome Panel. Genetic burden test was performed with Testing Rare vAriants using Public Data. Protein interactions were investigated with ConsensusPathDB and Cytoscape. For single nucleotide variants and copy number variations (CNV) analysis, samples were analyzed with the Illumina’s BaseSpace Variant Interpreter. Genetic variant burden was found elevated in 1,473 genes out of 30,000 known testis expressed genes. Three hundred and two genes with increased loss-of-function (LoF) variant set were present in more than one sample. Overrepresentation analysis with pathway-based set of genes with high variant burden demonstrated 26 pathways. Overrepresentation analysis with protein complex-based gene sets obtained 14 sets, showing the involvement in cell proliferation and DNA repair. Search Tool for the Retrieval of Interacting Genes/Proteins (STRING) network analysis with Cytoscape identified two clusters: (1) genes, involved in DNA binding/condensation and repair processes and (2) genes with the role in ribosome biosynthesis and gene expression processes. Increased loss of function germline variant burden and sumoylation may have critical significance in spermatogenesis. These parameters may be used for focused diagnosis in nonobstructive azoospermia patients. This may have both general significance for the decreased organism functionality but in particular is critical in spermatogenesis.

Abstract Image

探索特发性无精子症外显子组测序的潜力:遗传负担和网络分析研究
本研究的目的是研究无精子症表型与基因组不稳定性相关的遗传改变之间的联系。男性不育是一种多因素的病理学,基因改变可能是大多数严重男性不育病例的潜在因素。最近出现的下一代测序提供了一个同时分析许多基因及其相互作用的机会,最近建议将全外显子组测序(WES)与全基因组测序(WGS)一起用于严重不孕病例的诊断。然而,在严重男性不育的病例中,关于WES以及负荷测试和基因网络分析的报告很少或缺乏。对21例非梗阻性无精子症患者进行了WES检查。使用Twist综合外显子组面板对DNA样本进行测序。使用公共数据测试稀有病毒进行遗传负荷测试。用ConsensusPathDB和Cytoscape研究蛋白质相互作用。对于单核苷酸变异和拷贝数变异(CNV)分析,使用Illumina的BaseSpace变异解释器分析样本。在30000个已知睾丸表达基因中,1473个基因的遗传变异负荷升高。在一个以上的样本中存在322个具有功能丧失增加(LoF)变体集的基因。基于通路的高变异负荷基因组的过度表达分析显示了26条通路。基于蛋白质复合物的基因集的过度表达分析获得了14个集,显示参与细胞增殖和DNA修复。使用Cytoscape检索相互作用基因/蛋白质的搜索工具(STRING)网络分析确定了两个簇:(1)参与DNA结合/缩合和修复过程的基因;(2)在核糖体生物合成和基因表达过程中发挥作用的基因。生殖系变异负荷和sumoyalization功能丧失的增加可能对精子发生具有重要意义。这些参数可用于非梗阻性无精子症患者的重点诊断。这可能对机体功能下降具有普遍意义,但对精子发生尤其重要。
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来源期刊
Andrologia
Andrologia 医学-男科学
CiteScore
5.60
自引率
8.30%
发文量
292
审稿时长
6 months
期刊介绍: Andrologia provides an international forum for original papers on the current clinical, morphological, biochemical, and experimental status of organic male infertility and sexual disorders in men. The articles inform on the whole process of advances in andrology (including the aging male), from fundamental research to therapeutic developments worldwide. First published in 1969 and the first international journal of andrology, it is a well established journal in this expanding area of reproductive medicine.
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