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非梗阻性无精子症潜在生物标志物和通路的综合分析

Integrative analyses of potential biomarkers and pathways for non-obstructive azoospermia.

作者信息

Zhong Yucheng, Chen Xiaoqing, Zhao Jun, Deng Hao, Li Xiaohang, Xie Zhongju, Zhou Bingyu, Xian Zhuojie, Li Xiaoqin, Luo Guoqun, Li Huan

机构信息

Assisted Reproductive Technology Center, Southern Medical University Affiliated Maternal & Child Health Hospital of Foshan, Foshan, China.

Department of Breast Surgical Oncology, Southern Medical University Affiliated Maternal & Child Health Hospital of Foshan, Foshan, China.

出版信息

Front Genet. 2022 Nov 24;13:988047. doi: 10.3389/fgene.2022.988047. eCollection 2022.

Abstract

Non-obstructive azoospermia (NOA) is the most severe form of male infertility. Currently, the molecular mechanisms underlying NOA pathology have not yet been elucidated. Hence, elucidation of the mechanisms of NOA and exploration of potential biomarkers are essential for accurate diagnosis and treatment of this disease. In the present study, we aimed to screen for biomarkers and pathways involved in NOA and reveal their potential molecular mechanisms using integrated bioinformatics. We downloaded two gene expression datasets from the Gene Expression Omnibus (GEO) database. Differentially expressed genes (DEGs) in NOA and matched the control group tissues were identified using the limma package in R software. Subsequently, Gene ontology (GO), Kyoto Encyclopedia of Genes and Genomes (KEGG), gene set enrichment analysis (GSEA), protein-protein interaction (PPI) network, gene-microRNAs network, and transcription factor (TF)-hub genes regulatory network analyses were performed to identify hub genes and associated pathways. Finally, we conducted immune infiltration analysis using CIBERSORT to evaluate the relationship between the hub genes and the NOA immune infiltration levels. We identified 698 common DEGs, including 87 commonly upregulated and 611 commonly downregulated genes in the two datasets. GO analysis indicated that the most significantly enriched gene was protein polyglycylation, and KEGG pathway analysis revealed that the DEGs were most significantly enriched in taste transduction and pancreatic secretion signaling pathways. GSEA showed that DEGs affected the biological functions of the ribosome, focaladhesion, and protein_expor. We further identified the top 31 hub genes from the PPI network, and friends analysis of hub genes in the PPI network showed that NR4A2 had the highest score. In addition, immune infiltration analysis found that CD8 T cells and plasma cells were significantly correlated with ODF3 expression, whereas naive B cells, plasma cells, monocytes, M2 macrophages, and resting mast cells showed significant variation in the NR4A2 gene expression group, and there were differences in T cell regulatory immune cell infiltration in the FOS gene expression groups. The present study successfully constructed a regulatory network of DEGs between NOA and normal controls and screened three hub genes using integrative bioinformatics analysis. In addition, our results suggest that functional changes in several immune cells in the immune microenvironment may play an important role in spermatogenesis. Our results provide a novel understanding of the molecular mechanisms of NOA and offer potential biomarkers for its diagnosis and treatment.

摘要

非梗阻性无精子症(NOA)是男性不育最严重的形式。目前,NOA病理的分子机制尚未阐明。因此,阐明NOA的机制并探索潜在的生物标志物对于该疾病的准确诊断和治疗至关重要。在本研究中,我们旨在筛选参与NOA的生物标志物和通路,并使用综合生物信息学揭示其潜在的分子机制。我们从基因表达综合数据库(GEO)下载了两个基因表达数据集。使用R软件中的limma包鉴定NOA与匹配对照组组织中的差异表达基因(DEG)。随后,进行基因本体(GO)、京都基因与基因组百科全书(KEGG)、基因集富集分析(GSEA)、蛋白质-蛋白质相互作用(PPI)网络、基因-微小RNA网络和转录因子(TF)-枢纽基因调控网络分析,以鉴定枢纽基因和相关通路。最后,我们使用CIBERSORT进行免疫浸润分析,以评估枢纽基因与NOA免疫浸润水平之间的关系。我们在两个数据集中鉴定出698个常见的DEG,包括87个常见上调基因和611个常见下调基因。GO分析表明,最显著富集的基因是蛋白质聚糖化,KEGG通路分析显示DEG最显著富集于味觉转导和胰腺分泌信号通路。GSEA表明,DEG影响核糖体、粘着斑和蛋白质输出的生物学功能。我们从PPI网络中进一步鉴定出前31个枢纽基因,PPI网络中枢纽基因的互作分析显示NR4A2得分最高。此外,免疫浸润分析发现,CD8 T细胞和浆细胞与ODF3表达显著相关,而幼稚B细胞、浆细胞、单核细胞、M2巨噬细胞和静息肥大细胞在NR4A2基因表达组中表现出显著差异,FOS基因表达组中T细胞调节性免疫细胞浸润存在差异。本研究成功构建了NOA与正常对照之间的DEG调控网络,并通过综合生物信息学分析筛选出三个枢纽基因。此外,我们的结果表明,免疫微环境中几种免疫细胞的功能变化可能在精子发生中起重要作用。我们的结果为NOA的分子机制提供了新的认识,并为其诊断和治疗提供了潜在的生物标志物。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/6c77/9730279/87a5ec7a7602/fgene-13-988047-g001.jpg

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