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Identification of potentially new bifunctional RNA based on genome-wide data-mining of alternative splicing events

机译:基于替代剪接事件的全基因组数据挖掘,鉴定潜在的双功能RNA

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It is now evident that the transcriptional output of the genome is much more complex than estimates based on the number of protein-coding genes, and that non-coding RNA widely increase the source of regulatory molecules, a role previously ascribed to proteins. Furthermore, the recent characterization of bifunctional RNA, i.e. RNA for which both coding capacity and activity as functional RNA have been reported, adds an additional degree of complexity. Based on the SRA (Steroid Receptor RNA Activator) model, where bifunctionality is regulated by alternative splicing, we hypothesized that similar cases, not yet formally tested experimentally, might exist. Using freely available data from high-throughput sequencing projects, we propose here a bioinformatical identification of mRNA whose ORF are disrupted by alternative splicing events, especially by intron retention, and potentially representing a cognate non-coding RNA. Our data-mining approach revealed that the human genome contains around 300 possibilities of potentially new bifunctional RNA.
机译:现在很明显,基因组的转录输出比基于蛋白质编码基因的数量的估计要复杂得多,而且非编码RNA大大增加了调节分子的来源,而这种作用以前是由蛋白质引起的。此外,最近对双功能RNA的表征,即已经报道了其编码能力和活性均作为功能RNA的RNA,增加了复杂程度。基于SRA(Steroid Receptor RNA Activator,类固醇受体RNA激活剂)模型,其中双功能性通过交替剪接来调节,我们假设可能存在尚未经过实验正式测试的类似病例。我们使用来自高通量测序项目的免费数据,在这里提出了一种生物信息学鉴定的mRNA,其ORF因其他剪接事件(尤其是内含子保留)而被打乱,并可能代表同源的非编码RNA。我们的数据挖掘方法表明,人类基因组包含大约300种可能的潜在新双功能RNA。

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