mRNA–miRNA bipartite network reconstruction to predict prognostic module biomarkers in colorectal cancer stage differentiation†

IF 3.743 Q2 Biochemistry, Genetics and Molecular Biology Molecular BioSystems Pub Date : 2017-08-15 DOI:10.1039/C7MB00400A
Habib Motieghader, Morteza Kouhsar, Ali Najafi, Balal Sadeghi and Ali Masoudi-Nejad
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引用次数: 31

Abstract

Biomarker detection is one of the most important and challenging problems in cancer studies. Recently, non-coding RNA based biomarkers such as miRNA expression levels have been used for early diagnosis of many cancer types. In this study, a systems biology approach was used to detect novel miRNA based biomarkers for CRC diagnosis in early stages. The mRNA expression data from three CRC stages (Low-grade Intraepithelial Neoplasia (LIN), High-grade Intraepithelial Neoplasia (HIN) and Adenocarcinoma) were used to reconstruct co-expression networks. The networks were clustered to extract co-expression modules and detected low preserved modules among CRC stages. Then, the experimentally validated mRNA-miRNA interaction data were applied to reconstruct three mRNA-miRNA bipartite networks. Twenty miRNAs with the highest degree (hub miRNAs) were selected in each bipartite network to reconstruct three bipartite subnetworks for further analysis. The analysis of these hub miRNAs in the bipartite subnetworks revealed 30 distinct important miRNAs as prognostic markers in CRC stages. There are two novel CRC related miRNAs (hsa-miR-190a-3p and hsa-miR-1277-5p) in these 30 hub miRNAs that have not been previously reported in CRC. Furthermore, a drug-gene interaction network was reconstructed to detect potential candidate drugs for CRC treatment. Our analysis shows that the hub miRNAs in the mRNA-miRNA bipartite network are very essential in CRC progression and should be investigated precisely in future studies. In addition, there are many important target genes in the results that may be critical in CRC progression and can be analyzed as therapeutic targets in future research.

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mRNA-miRNA双部网络重建预测结直肠癌分期分化预后模块生物标志物
生物标志物检测是癌症研究中最重要和最具挑战性的问题之一。近年来,基于非编码RNA的生物标志物如miRNA表达水平已被用于许多癌症类型的早期诊断。在本研究中,采用系统生物学方法检测基于miRNA的早期结直肠癌诊断的新型生物标志物。mRNA表达数据来自CRC的三个阶段(低级别上皮内瘤变(LIN)、高级别上皮内瘤变(HIN)和腺癌),用于重建共表达网络。对这些网络进行聚类以提取共表达模块,并在CRC分期中检测低保存模块。然后,应用实验验证的mRNA-miRNA相互作用数据重构三个mRNA-miRNA双部网络。在每个二部网络中选择20个程度最高的mirna (hub mirna),重建三个二部子网络进行进一步分析。对两部分子网络中这些枢纽mirna的分析揭示了30种不同的重要mirna作为结直肠癌分期的预后标志物。在这30个中心mirna中,有两个新的CRC相关mirna (hsa-miR-190a-3p和hsa-miR-1277-5p),以前未在CRC中报道过。此外,重建了一个药物-基因相互作用网络,以检测CRC治疗的潜在候选药物。我们的分析表明,mRNA-miRNA双部网络中的枢纽mirna在结直肠癌的进展中非常重要,应该在未来的研究中进行精确的研究。此外,结果中有许多重要的靶基因可能对CRC的进展至关重要,可以在未来的研究中作为治疗靶点进行分析。
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来源期刊
Molecular BioSystems
Molecular BioSystems 生物-生化与分子生物学
CiteScore
2.94
自引率
0.00%
发文量
0
审稿时长
2.6 months
期刊介绍: Molecular Omics publishes molecular level experimental and bioinformatics research in the -omics sciences, including genomics, proteomics, transcriptomics and metabolomics. We will also welcome multidisciplinary papers presenting studies combining different types of omics, or the interface of omics and other fields such as systems biology or chemical biology.
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