Department of Vascular Surgery, 71044Xuanwu Hospital, Capital Medical University, Beijing,China.
Vascular. 2022 Aug;30(4):639-649. doi: 10.1177/17085381211026474. Epub 2021 Jun 17.
The study aimed to assess the gene expression profile of biopsies obtained from the neck of human abdominal aortic aneurysm (AAA) and the main site of AAA dilatation and to investigate the molecular mechanism underlying the development of AAA.
The microarray profile of GSE47472 and GSE57691 were obtained from the Gene Expression Omnibus (GEO) database. The GSE47472 was a microarray dataset of tissues from the aortic neck of AAA patients versus normal controls. The GSE57691 was a microarray dataset including the tissues from main site of AAA dilatation versus normal controls. Differentially expressed genes (DEGs) were chosen using the R package and annotated by Gene Ontology (GO) and Kyoto Encyclopedia of Genes and Genomics (KEGG). The hub genes were identified in the protein-protein interaction (PPI) network.
342 upregulated DEGs and 949 downregulated DEGs were obtained from GSE47472. The upregulated DEGs were mainly enriched in biological regulation (ontology: BP), the membrane (ontology: CC), and protein binding (ontology: MF), and the downregulated genes were mainly enriched in biological regulation (ontology: BP), the membrane (ontology: CC), and protein blinding (ontology: MF). In the KEGG enrichment analysis, the DEGs mainly involved glycosaminoglycan degradation, vasopressin-regulated water reabsorption, and pyruvate metabolism. The hub genes in GSE47472 mainly include and From GSE57691, 248 upregulated DEGs and 1120 downregulated DEGs were selected. The upregulated DEGs of GSE57691 were mainly enriched in biological regulation (ontology: BP), the membrane (ontology: CC), and protein binding (ontology: MF), and the downregulated genes were mainly enriched in metabolic process (ontology: BP), the membrane (ontology: CC), and protein blinding (ontology: MF). In the KEGG enrichment analysis, the DEGs mainly involved the mitochondrial respiratory, respiratory chain complex, and respiratory chain. and were identified as the hub genes
At the early stage of AAA, the current study indicated the importance of glycosaminoglycan degradation and anaerobic metabolism. We also identified several hub genes closely related to AAA ( etc. At the progression of the AAA, the dysfunctional mitochondria played a critical role in AAA formation and the etc., were identified as the hub genes.
本研究旨在评估从人类腹主动脉瘤(AAA)颈部获得的活检的基因表达谱,并探讨 AAA 发展的分子机制。
从基因表达综合数据库(GEO)中获得 GSE47472 和 GSE57691 的微阵列图谱。GSE47472 是 AAA 患者和正常对照的主动脉颈部组织的微阵列数据集。GSE57691 是包括 AAA 扩张主要部位的组织与正常对照的微阵列数据集。使用 R 包选择差异表达基因(DEGs),并通过基因本体论(GO)和京都基因与基因组百科全书(KEGG)进行注释。在蛋白质-蛋白质相互作用(PPI)网络中确定了枢纽基因。
从 GSE47472 中获得了 342 个上调 DEGs 和 949 个下调 DEGs。上调的 DEGs 主要富集于生物调节(本体论:BP)、膜(本体论:CC)和蛋白结合(本体论:MF),而下调基因主要富集于生物调节(本体论:BP)、膜(本体论:CC)和蛋白结合(本体论:MF)。KEGG 富集分析表明,DEGs 主要涉及糖胺聚糖降解、加压素调节的水重吸收和丙酮酸代谢。GSE47472 中的枢纽基因主要包括和。从 GSE57691 中选择了 248 个上调 DEGs 和 1120 个下调 DEGs。GSE57691 上调的 DEGs 主要富集于生物调节(本体论:BP)、膜(本体论:CC)和蛋白结合(本体论:MF),而下调基因主要富集于代谢过程(本体论:BP)、膜(本体论:CC)和蛋白结合(本体论:MF)。KEGG 富集分析表明,DEGs 主要涉及线粒体呼吸、呼吸链复合物和呼吸链。和被鉴定为枢纽基因。
在 AAA 的早期阶段,本研究表明糖胺聚糖降解和无氧代谢的重要性。我们还鉴定了几个与 AAA 密切相关的枢纽基因(如等)。在 AAA 的进展过程中,功能失调的线粒体在 AAA 的形成中起着关键作用,等被鉴定为枢纽基因。