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Exploring the molecular mechanisms of osteosarcoma by the integrated analysis of mRNAs and miRNA microarrays

机译:通过MRNA和miRNA微阵列的综合分析探索骨肉瘤的分子机制

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Osteosarcoma (OS) is the most frequently occurring primary bone malignancy with a rapid progression and poor survival. In the present study, in order to examine the molecular mechanisms of OS, we analyzed the microarray of GSE28425. GSE28425 was downloaded from Gene Expression Omnibus, which also included the miRNA expression profile, GSE28423, and the mRNA expression profile, GSE28424. Each of the expression profiles included 19 OS cell lines and 4 normal bones. The differentially expressed genes (DEGs) and differentially expressed miRNAs (DE-miRNAs) were screened using the limma package in Bioconductor. The DEGs associated with tumors were screened and annotated. Subsequently, the potential functions of the DEGs were analyzed by Gene Ontology (GO) and pathway enrichment analyses. Furthermore, the protein-protein interaction (PPI) network was constructed using the STRING database and Cytoscape software. Furthermore, modules of the PPI network were screened using the ClusterOne plugin in Cytoscape. Additionally, the transcription factor (TF)-DEG regulatory network, DE-miRNA-DEG regulatory network and miRNA-function collaborative network were separately constructed to obtain key DEGs and DE-miRNAs. In total, 1,609 DEGs and 149 DE-miRNAs were screened. Upregulated FOS-like antigen 1 (FOSL1) also had the function of an oncogene. MAD2 mitotic arrest deficient-like 1 (MAD2L1; degree, 65) and aurora kinase A (AURKA; degree, 64) had higher degrees in the PPI network of the DEGs. In the TF-DEG regulatory network, the TF, signal transducer and activator of transcription 3 (STAT3) targeted the most DEGs. Moreover, in the DE-miRNA-DEG regulatory network, downregulated miR-1 targeted many DEGs and estrogen receptor 1 (ESR1) was targeted by several highly expressed miRNAs. Moreover, in the miRNA-function collaborative networks of upregulated miRNAs, miR-128 targeted myeloid dendritic associated functions. On the whole, our data indicate that MAD2L1, AURKA, STAT3, ESR1, FOSL1, miR-1 and miR-128 may play a role in the development and/or progressio of OS.
机译:骨肉瘤(OS)是最常见的原发性骨骼恶性肿瘤,进展迅速,存活差。在本研究中,为了检查OS的分子机制,我们分析了GSE28425的微阵列。 GSE28425从基因表达Omnibus下载,其中还包括MiRNA表达谱,GSE28423和MRNA表达谱GSE28424。每个表达式配置文件包括19个OS细胞系和4个正常骨骼。使用Biocomion中的氨基封装筛选差异表达的基因(DEGS)和差异表达的miRNA(de-miRNA)。筛选和注释与肿瘤相关的曲面。随后,通过基因本体学(GO)和途径富集分析分析DEG的潜在功能。此外,使用String数据库和Cytoscape软件构建蛋白质 - 蛋白质相互作用(PPI)网络。此外,使用Cytoscape中的Clusterne插件进行筛选PPI网络的模块。另外,单独构建转录因子(TF)-DEG调节网络,DE-MiRNA-DE调节网络和MiRNA函数协作网络以获得关键的DEGS和DE-MIRNA。总共筛选了1,609只可培养1,609℃和149名De-miRNA。上调的FOS样抗原1(FOSL1)也具有癌基因的功能。 Mad2有丝分裂逮捕缺乏1(MAD2L1;学位,65)和极光激酶A(Aurka;学位,64)在DEG的PPI网络中具有更高的程度。在TF-DEG调节网络中,TF,信号传感器和转录3(STAT3)的激活剂靶向最多。此外,在De-miRNA-Deg调节网络中,下调的miR-1靶向许多次数和雌激素受体1(ESR1)被几个高表达的miRNA靶向。此外,在上调miRNA的miRNA函数协作网络中,MIR-128靶向髓样树枝状相关功能。总的来说,我们的数据表明Mad2L1,Aurka,STAT3,ESR1,FOSL1,MIR-1和MIR-128可能在OS的开发和/或进步中发挥作用。

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