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首页> 外文期刊>Journal of computational biology: A journal of computational molecular cell biology >Bioinformatics Prediction and Experimental Validation of MicroRNAs Involved in Cross-Kingdom Interaction
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Bioinformatics Prediction and Experimental Validation of MicroRNAs Involved in Cross-Kingdom Interaction

机译:涉及跨王国相互作用的microRNA的生物信息学预测和实验验证。

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MicroRNAs (miRNAs) are a class of small noncoding RNAs that act as efficient post-transcriptional regulators of gene expression. In 2012, the first cross-kingdom miRNA-based interaction had been evidenced, demonstrating that exogenous miRNAs act in a manner of mammalian functional miRNAs. Starting from this evidence, we defined the concept of cross-kingdom functional homology between plant and mammalian miRNAs as a needful requirement for vegetal miRNA to explicit a regulation mechanism into the host mammalian cell, comparable to the endogenous one. Then, we proposed a new dedicated algorithm to compare plant and mammalian miRNAs, searching for functional sequence homologies between them, and we developed a web software called MirCompare. We also predicted human genes regulated by the selected plant miRNAs, and we determined the role of exogenous miRNAs in the perturbation of intracellular interaction networks. Finally, as already performed by Pirro` and coworkers, the ability of MirCompare to select plant miRNAs with functional homologies with mammalian ones has been experimentally confirmed by evaluating the ability of mol-miR168a to downregulate the protein expression of SIRT1, when its mimic is transfected into human hepatoma cell line G2 (HEPG2) cells. This tool is implemented into a user-friendly web interface, and the access is free to public through the website http://160.80.35.140/MirCompare
机译:微小RNA(miRNA)是一类小的非编码RNA,可作为有效的基因表达转录后调节剂。在2012年,首次证实了基于跨王国miRNA的相互作用,这表明外源性miRNA以哺乳动物功能性miRNA的方式起作用。从这一证据出发,我们将植物和哺乳动物miRNA之间的跨王国功能同源性的概念定义为植物miRNA向内在哺乳动物细胞中显露与内源相似的调控机制的必要要求。然后,我们提出了一种新的专用算法来比较植物和哺乳动物的miRNA,寻找它们之间的功能序列同源性,并开发了一个名为MirCompare的网络软件。我们还预测了受所选植物miRNA调控的人类基因,并确定了外源miRNA在细胞内相互作用网络扰动中的作用。最后,正如Pirro`及其同事所进行的那样,通过评估mol-miR168a在模拟物转染后下调SIRT1蛋白质表达的能力,已通过实验证实了MirCompare选择与哺乳动物具有功能同源性的植物miRNA的能力。进入人肝癌细胞G2(HEPG2)细胞。该工具已实现为用户友好的Web界面,可通过以下网站免费公开访问:http://160.80.35.140/MirCompare

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