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Functional Prediction of Candidate MicroRNAs for CRC Management Using in Silico Approach

机译:使用计算机模拟方法对用于CRC管理的候选MicroRNA进行功能预测

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摘要

Approximately 30–50% of malignant growths can be prevented by avoiding risk factors and implementing evidence-based strategies. Colorectal cancer (CRC) accounted for the second most common cancer and the third most common cause of cancer death worldwide. This cancer subtype can be reduced by early detection and patients’ management. In this study, the functional roles of the identified microRNAs were determined using an in silico pipeline. Five microRNAs identified using an in silico approach alongside their seven target genes from our previous study were used as datasets in this study. Furthermore, the secondary structure and the thermodynamic energies of the microRNAs were revealed by Mfold algorithm. The triplex binding ability of the oligonucleotide with the target promoters were analyzed by Trident. Finally, evolutionary stage-specific somatic events and co-expression analysis of the target genes in CRC were analyzed by SEECancer and GeneMANIA plugin in Cytoscape. Four of the five microRNAs have the potential to form more than one secondary structure. The ranges of the observed/expected ratio of CpG dinucleotides of these genes range from 0.60 to 1.22. Three of the candidate microRNA were capable of forming multiple triplexes along with three of the target mRNAs. Four of the total targets were involved in either early or metastatic stage-specific events while three other genes were either a product of antecedent or subsequent events of the four genes implicated in CRC. The secondary structure of the candidate microRNAs can be used to explain the different degrees of genetic regulation in CRC due to their conformational role to modulate target interaction. Furthermore, due to the regulation of important genes in the CRC pathway and the enrichment of the microRNA with triplex binding sites, they may be a useful diagnostic biomarker for the disease subtype.
机译:通过避免危险因素并实施循证策略,可以预防约30–50%的恶性肿瘤生长。大肠癌(CRC)占全球第二大最常见的癌症和第三大最常见的癌症死亡原因。通过早期发现和患者管理,可以减少这种癌症亚型。在这项研究中,已确定的microRNA的功能作用是使用计算机模拟管线确定的。使用计算机方法鉴定的五个microRNA以及我们先前研究中的七个靶基因被用作本研究的数据集。此外,通过Mfold算法揭示了microRNA的二级结构和热力学能量。通过Trident分析寡核苷酸与靶启动子的三链结合能力。最后,通过Cytoscape中的SEECancer和GeneMANIA插件分析了进化阶段特定的体细胞事件和目标基因在CRC中的共表达分析。五个microRNA中有四个具有形成一个以上二级结构的潜力。这些基因的CpG二核苷酸的观察/预期比例范围为0.60至1.22。候选微RNA中的三个能够与三个目标mRNA一起形成多个三链体。总靶标中的四个参与了早期或转移性阶段特异性事件,而其他三个基因是涉及CRC的四个基因的前期或后续事件的产物。候选microRNA的二级结构可用于解释CRC中不同程度的基因调控,因为它们的构象作用可调节靶标相互作用。此外,由于在CRC通路中重要基因的调控以及具有三链结合位点的microRNA的富集,它们可能是疾病亚型的有用诊断生物标志物。

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