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miR-30a-GNG2 and miR-15b-ACSS2 Interaction Pairs May Be Potentially Crucial for Development of Abdominal Aortic Aneurysm by Influencing Inflammation

机译:miR-30a-gng2和miR-15b-acss2相互作用对可能是通过影响炎症的腹主动脉瘤的发育可能是至关重要的

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Abdominal aortic aneurysm (AAA) is a lethal vascular degenerative disease for the elderly, but current therapeutic options are limited. This study was to explore the molecular mechanisms of AAA to screen underlying treatment targets for AAA. The gene and microRNA (miRNA) expression profiles of human AAA were downloaded from Gene Expression Omnibus database under accession number GSE57691, GSE62179, and GSE63541. Differentially expressed genes (DEGs) and microRNAs (miRNAs; DEMs) were identified using the Linear Models for Microarray data method. Protein-protein interaction (PPI) network, module analysis, and miRNA-mRNA regulatory network analyses were performed to screen hub genes and miRNAs that regulated the hub genes. The Database for Annotation, Visualization and Integrated Discovery was used to predict the functions of genes. GEPIA and Tumor-miRNA-Pathway online software were used to validate the expressions of crucial DEMs and DEGs in other cancers, respectively. As a result, in the GSE57691 dataset, a total of 584 DEGs were found to be specific for AAA, 521 of which were used for constructing the PPI network. ACSS2 (acyl-CoA synthetase short-chain family member 2), GNG2 (G protein subunit gamma 2), and CXCL1 (C-X-C motif chemokine ligand 1) and CCR7 (C-C motif chemokine receptor 7) were believed to be hub genes by calculating their topological features in the PPI network. Upregulated GNG2 could interact with CXCL1 and CCR7 to involve in chemokine signaling pathway, while downregulated ACSS2 was associated with lipid biosynthetic process. In the miRNA-mRNA regulatory network, ACSS2 was found to be regulated by hsa-miR-15b; hsa-miR-30a could modulate the expression of GNG2. In line with our analysis in AAA, GNG2, ACSS2, hsa-miR-30a, and hsa-miR-15b were also confirmed to be significantly upregulated or downregulated in several cancer types. In conclusion, hsa-miR-30a-GNG2 and hsa-miR-15b-ACSS2 interaction pairs may represent novel mechanisms for explaining the pathogenesis of AAA. Targeted regulation of them may be potential strategies for treatment of AAA.
机译:腹主动脉瘤(AAA)是一种老年人的致命血管退行性疾病,但目前的治疗选择是有限的。该研究是探讨AAA对AAA筛选底层治疗靶标的分子机制。在登录号GSE57691,GSE62179和GSE63541下,从基因表达Omnibus数据库下载人AAA的基因和MicroRNA(miRNA)表达谱。使用用于微阵列数据方法的线性模型来识别差异表达的基因(DEGS)和MicroRNA(MiRNA; DEMS)。蛋白质 - 蛋白质相互作用(PPI)网络,模块分析和miRNA-mRNA调节网络分析对筛网枢纽基因和髓质基因进行调节的筛选。用于注释,可视化和集成发现的数据库用于预测基因的功能。贪吃和肿瘤 - miRNA途径在线软件分别用于分别验证其他癌症的关键DEMS和DEGS的表达。结果,在GSE57691数据集中,总共发现584只可用于构建PPI网络的AAA,521种特异性。 ACSS2(酰基-CoA合成酶短链家族成员2),GNG2(G蛋白亚基γ2)和CXCL1(CXC MOTIF趋化因子配体1)和CCR7(CC基序趋化因子受体7)通过计算它们是集线器基因PPI网络中的拓扑功能。上调的GNG2可以与CXCL1和CCR7相互作用以涉及趋化因子信号传导途径,而下调的ACSS2与脂质生物合成过程相关。在MiRNA-mRNA调节网络中,发现ACSS2由HSA-MIR-15B调节; HSA-MIR-30A可以调节GNG2的表达。符合我们在AAA,GNG2,ACSS2,HSA-MIR-30A和HSA-MIR-15B中的分析,还确认在几种癌症类型中显着上调或下调。总之,HSA-MIR-30A-GNG2和HSA-MIR-15B-ACSS2相互作用对可以代表用于解释AAA发病机制的新机制。目标调节可能是治疗AAA的潜在策略。

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