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Comparative analysis of gene expression profiles of gastric cardia adenocarcinoma and gastric non-cardia adenocarcinoma

机译:胃card门腺癌和非心脏-门腺癌基因表达谱的比较分析

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摘要

In the present study, gene expression profiles were analyzed to identify the molecular mechanisms underlying gastric cardia adenocarcinoma (GCA) and gastric non-cardia adenocarcinoma (GNCA). A gene expression dataset (accession number ) was downloaded from Gene Expression Omnibus, and consisted of 62 GCA samples and 62 normal controls, as well as 72 GNCA samples and 72 normal controls. The two groups of differentially-expressed genes (DEGs) were compared to obtain common and unique DEGs. A differential analysis was performed using the Linear Models for Microarray Data package in R. Functional enrichment analysis was conducted for the DEGs using the Database for Annotation, Visualization and Integrated Discovery. Protein-protein interaction (PPI) networks were constructed for the DEGs with information from the Search Tool for the Retrieval of Interacting Genes. Subnetworks were extracted from the whole network with Cytoscape. Compared with the control, 284 and 268 genes were differentially-expressed in GCA and GNCA, respectively, of which 194 DEGs were common between GCA and GNCA. Common DEGs [e.g., claudin (CLDN)7, CLDN4 and CLDN3] were associated with cell adhesion and digestion. GCA-unique DEGs [e.g., MAD1 mitotic arrest deficient like 1, cyclin (CCN)B1, CCNB2 and CCNE1] were associated with the cell cycle and the regulation of cell proliferation, while GNCA-unique DEGs (e.g., GATA binding protein 6 and hyaluronoglucosaminidase 1) were implicated in cell death. A PPI network with 141 nodes and 446 edges were obtained, from which two subnetworks were extracted. Genes [e.g., fibronectin 1, collagen type I α2 chain (COL1A2) and COL1A1] from the two subnetworks were implicated in extracellular matrix organization. These common DEGs could advance our understanding of the etiology of gastric cancer, while the unique DEGs in GCA and GNCA could better define the properties of specific cancers and provide potential biomarkers for diagnosis, prognosis or therapy.
机译:在本研究中,分析了基因表达谱以鉴定胃identify门腺癌(GCA)和胃非non门腺癌(GNCA)的分子机制。从Gene Expression Omnibus下载基因表达数据集(登录号),它由62个GCA样品和62个正常对照以及72个GNCA样品和72个正常对照组成。比较两组差异表达基因(DEG),以获得共同和独特的DEG。使用R中的微阵列数据线性模型软件包进行差异分析。使用注释,可视化和集成发现数据库对DEG进行功能增强分析。使用来自检索相互作用基因检索工具的信息为DEG构建了蛋白质-蛋白质相互作用(PPI)网络。使用Cytoscape从整个网络中提取子网。与对照组相比,GCA和GNCA中分别有284和268个基因差异表达,其中194个DEG在GCA和GNCA之间是常见的。常见的DEG [例如claudin(CLDN)7,CLDN4和CLDN3]与细胞粘附和消化相关。 GCA独特的DEG [例如,像1,cyclin(CCN)B1,CCNB2和CCNE1一样的MAD1有丝分裂阻滞缺陷]与细胞周期和细胞增殖的调控有关,而GNCA独特的DEG(例如GATA结合蛋白6和透明质酸氨基葡萄糖苷酶1)与细胞死亡有关。获得了一个具有141个节点和446个边缘的PPI网络,从中提取了两个子网。来自两个子网的基因[例如纤连蛋白1,I型胶原α2链(COL1A2)和COL1A1]与细胞外基质的组织有关。这些常见的DEG可以增进我们对胃癌病因的了解,而GCA和GNCA中独特的DEG可以更好地定义特定癌症的特性,并为诊断,预后或治疗提供潜在的生物标志物。

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