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Designing small multiple-target artificial RNAs

机译:设计小型多目标人工RNA

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摘要

MicroRNAs (miRNAs) are naturally occurring small RNAs that regulate the expression of several genes. MiRNAs’ targeting rules are based on sequence complementarity between their mature products and targeted genes’ mRNAs. Based on our present understanding of those rules, we developed an algorithm to design artificial miRNAs to target simultaneously a set of predetermined genes. To validate in silico our algorithm, we tested different sets of genes known to be targeted by a single miRNA. The algorithm finds the seed of the corresponding miRNA among the solutions, which also include the seeds of new artificial miRNA sequences potentially capable of targeting these genes as well. We also validated the functionality of some artificial miRNAs designed to target simultaneously members of the E2F family. These artificial miRNAs reproduced the effects of E2Fs inhibition in both normal human fibroblasts and prostate cancer cells where they inhibited cell proliferation and induced cellular senescence. We conclude that the current miRNA targeting rules based on the seed sequence work to design multiple-target artificial miRNAs. This approach may find applications in both research and therapeutics.
机译:MicroRNA(miRNA)是天然存在的小RNA,可调节多个基因的表达。 MiRNA的靶向规则基于其成熟产物和靶向基因的mRNA之间的序列互补性。基于我们对这些规则的当前理解,我们开发了一种算法,可以设计人工miRNA同时靶向一组预定基因。为了在计算机上验证我们的算法,我们测试了已知由单个miRNA靶向的不同基因集。该算法在解决方案中找到相应miRNA的种子,其中还包括潜在也能够靶向这些基因的新人工miRNA序列的种子。我们还验证了一些旨在同时靶向E2F家族成员的人工miRNA的功能。这些人工miRNA在正常人成纤维细胞和前列腺癌细胞中均能复制E2Fs抑制作用,从而抑制细胞增殖并诱导细胞衰老。我们得出的结论是,基于种子序列的当前miRNA靶向规则可用于设计多靶点人工miRNA。这种方法可以在研究和治疗中找到应用。

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