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Screening of genes associated with inflammatory responses in the endolymphatic sac reveals underlying mechanisms for autoimmune inner ear diseases

机译:筛查与内淋囊中炎症反应相关的基因揭示了自身免疫内耳疾病的基本机制

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The current study analyzed gene expression profiles of the endolymphatic sac (ES) in rats and identified expressed genes, present in the human and rat ES, to reveal key hubs for inflammatory responses. Microarray data (accession no. E-MEXP-3022) were obtained from the European Bioinformatics Institute database, including three biological replicates of ES plus dura tissues and three replicates of pure dura tissues form rats. Differentially expressed genes (DEGs) were screened using the Linear Model for Microarray data method and a protein-protein interaction (PPI) network was constructed using data from the Search Tool for the Retrieval of Interacting Genes/Proteins database followed by a module analysis via Clustering with Overlapping Neighborhood Expansion. Function enrichment analysis was performed using the Database for Annotation, Visualization and Integrated Discovery online tool. A total of 612 DEGs were identified, including 396 upregulated and 216 downregulated genes. Gene ontology term enrichment analysis indicated DEGs were associated with cell adhesion, including 5-integrin (Itga1) and secreted phosphoprotein 1 (Spp1); T cell co-stimulation, including C-C chemokine ligand (Ccl)21 and Ccl19; and the toll-like receptor signaling pathway, including toll-like receptor (Tlr)2, Tlr7 and Tlr8. These conclusions were supported by Kyoto Encyclopedia of Genes and Genomes pathway analyses revealing extracellular matrix-receptor interaction, including Itga1 and Spp1; leukocyte transendothelial migration, includingclaudin-4 (Cldn4); and malaria, including Tlr2. The hub roles of Itga1, Cd24 and Spp1 were revealed by calculating three topological properties of the PPI network. Ccl21, Ccl19 and Cldn4 were demonstrated to be crucial following significant module analysis according to the corresponding threshold, which revealed they were enriched in inflammation pathways. Tlr7, Tlr2, granzyme m and Tlr8 were common genes associated with inflammatory responses in rat and human ES. In conclusion, abnormal expression of the aforementioned inflammation-associated genes may be associated with the development of autoimmune inner ear diseases.
机译:目前研究分析了大鼠内淋巴囊的基因表达谱,并鉴定了人和大鼠ES中存在的表达基因,以揭示炎症反应的关键轮毂。从欧洲生物信息学院数据库获得了微阵列数据(加入NO。E-MEXP-3022),包括eS加硬脂组织的三种生物学重复,以及三种纯Dura组织形式大鼠的三种重复。使用微阵列数据方法的线性模型筛选差异表达的基因(DEG),并且使用来自搜索工具的数据来构建蛋白质 - 蛋白质相互作用(PPI)网络,用于检索相互作用基因/蛋白数据库,然后通过聚类进行模块分析具有重叠的邻居扩展。使用数据库进行注释,可视化和集成发现在线工具进行功能浓缩分析。鉴定了总共612次,包括396个上调和216个下调基因。基因本体学术语富集分析表明的DEG与细胞粘附相关,包括5-整联蛋白(ITGA1)和分泌的磷蛋白1(SPP1); T细胞共刺激,包括C-C趋化因子配体(CCl)21和CCl19;和含有Toll样受体信号传导途径,包括Toll样受体(TLR)2,TLR7和TLR8。这些结论得到了基因kyoto百科全书和基因组途径分析揭示细胞外基质受体相互作用,包括Itga1和SPP1;白细胞翻剖迁移,包括Claudin-4(CLDN4);和疟疾,包括TLR2。通过计算PPI网络的三种拓扑特性,揭示了ITGA1,CD24和SPP1的集线器角色。 CCL21,CCL19和CLDN4被证明在根据相应阈值的显着模块分析之后至关重要,这显示它们富含炎症途径。 TLR7,TLR2,Granzyme M和TLR8是与大鼠和人ES中炎症反应相关的常见基因。总之,上述炎症相关基因的异常表达可能与自身免疫内耳疾病的发育有关。

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