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RETRACTED ARTICLE: Risk miRNA screening of ovarian cancer based on miRNA functional synergistic network

机译:缩回文章:基于miRNA功能协同网络的卵巢癌miRNA筛查风险

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Background miRNAs are proved to have causal roles in tumorgenesis involving various types of human cancers, but the mechanism is not clear. We aimed to explore the effect of miRNAs on the development of ovarian cancer and the underlying mechanism. Methods The miRNA expression profile GSE31801 was downloaded from GEO (Gene Expression Omnibus) database. Firstly, the differentially expressed miRNAs were screened. Target genes of the miRNAs were collected from TargetScan, PicTar, miRanda, and DIANA-microT database, then the miRNA-miRNA co-regulating network was constructed using miRNA pairs with common regulated target genes. Next, the functional modules in the network were studied, the miRNA pairs regulated at least one modules were enriched to form the miRNA functional synergistic network (MFSN). Results Risk miRNA were selected in MFSN according to the topological structure. Transcript factors (TFs) in MFSN were identified, followed by the miRNA-transcript factor networks construction. Totally, 42 up- and 61 down-regulated differentially expressed miRNAs were identified, of which 68 formed 2292 miRNA pairs in the miRNA-miRNA co-regulating network. GO: 0007268 (synaptic transmission) and GO: 0019226 (transmission of nerve impulse) were the two common functions of miRNAs in MFSN, and hsa-miR-579 (36), hsa-miR-942 (31), hsa-miR-105 (31), hsa-miR-150 (34), and hsa-miR-27a* (32) were selected as the hub nodes in MFSN. Conclusions In all, 17 TFs, including CREM, ERG, and CREB1 were screened as the cancer related TFs in MFSN. Other TFs, such as BIN1, FOXN3, FOXK1, FOXP2, and ESRRG with high degrees may be inhibited in ovarian cancer. MFSN gave us a new shed light on the mechanism studies in ovarian cancer.
机译:事实证明背景miRNA在涉及各种类型人类癌症的肿瘤发生中具有因果作用,但机制尚不清楚。我们旨在探讨miRNA对卵巢癌发展的影响及其潜在机制。方法从GEO(Gene Expression Omnibus)数据库下载miRNA表达谱GSE31801。首先,筛选差异表达的miRNA。从TargetScan,PicTar,miRanda和DIANA-microT数据库收集miRNA的靶基因,然后使用具有常见调控靶基因的miRNA对构建miRNA-miRNA共同调控网络。接下来,研究了网络中的功能模块,调节了至少一个模块的miRNA对被丰富起来,形成了miRNA功能协同网络(MFSN)。结果根据拓扑结构选择了MFSN中的风险miRNA。确定了MFSN中的转录因子(TFs),然后构建了miRNA转录因子网络。总共鉴定出42个上调和61个下调的差异表达miRNA,其中68个在miRNA-miRNA共同调控网络中形成2292个miRNA对。 GO:0007268(突触传递)和GO:0019226(神经冲动传递)是MFSN中miRNA的两个常见功能,而hsa-miR-579(36),hsa-miR-942(31),hsa-miR- 105(31),hsa-miR-150(34)和hsa-miR-27a *(32)被选为MFSN中的中心节点。结论总共筛选出17种TF,包括CREM,ERG和CREB1,作为MFSN中与癌症相关的TF。卵巢癌中可能会抑制其他TF,例如BIN1,FOXN3,FOXK1,FOXP2和ESRRG。 MFSN使我们对卵巢癌的机制研究有了新的了解。

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