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Investigation of RNA Editing Sites within Bound Regions of RNA-Binding Proteins

机译:RNA结合蛋白结合区域内的RNA编辑位点的调查。

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摘要

Studies in epitranscriptomics indicate that RNA is modified by a variety of enzymes. Among these RNA modifications, adenosine to inosine (A-to-I) RNA editing occurs frequently in the mammalian transcriptome. These RNA editing sites can be detected directly from RNA sequencing (RNA-seq) data by examining nucleotide changes from adenosine (A) to guanine (G), which substitutes for inosine (I). However, a careful investigation of such nucleotide changes must be conducted to distinguish sequencing errors and genomic mutations from the genuine editing sites. Building upon our recent introduction of an easy-to-use bioinformatics tool, RNA Editor, to detect RNA editing events from RNA-seq data, we examined the extent by which RNA editing events affect the binding of RNA-binding proteins (RBP). Through employing bioinformatic techniques, we uncovered that RNA editing sites occur frequently in RBP-bound regions. Moreover, the presence of RNA editing sites are more frequent when RNA editing islands were examined, which are regions in which RNA editing sites are present in clusters. When the binding of one RBP, human antigen R [HuR; encoded by ELAV-like protein 1 (ELAV1)], was quantified experimentally, its binding was reduced upon silencing of the RNA editing enzyme adenosine deaminases acting on RNA (ADAR) compared to the control—suggesting that the presence of RNA editing islands influence HuR binding to its target regions. These data indicate RNA editing as an important mediator of RBP–RNA interactions—a mechanism which likely constitutes an additional mode of post-transcription gene regulation in biological systems.
机译:转录组学研究表明,RNA被多种酶修饰。在这些RNA修饰中,腺苷到肌苷(A至I)RNA编辑经常发生在哺乳动物的转录组中。通过检查从腺苷(A)到鸟嘌呤(G)的核苷酸变化(可替代肌苷(I)),可以直接从RNA测序(RNA-seq)数据中检测这些RNA编辑位点。但是,必须对此类核苷酸变化进行仔细研究,以将测序错误和基因组突变与真正的编辑位点区分开。基于我们最近引入的易于使用的生物信息学工具RNA编辑器来检测RNA序列数据中的RNA编辑事件,我们研究了RNA编辑事件影响RNA结合蛋白(RBP)结合的程度。通过采用生物信息学技术,我们发现RNA编辑位点经常出现在RBP结合区域。此外,当检查RNA编辑岛时,RNA编辑位点的存在更加频繁,所述RNA编辑岛是其中RNA编辑位点成簇存在的区域。当结合一个RBP时,人抗原R [HuR;通过实验定量了由类似ELAV的蛋白1(ELAV1)编码的蛋白,与对照相比,作用于RNA(ADAR)的RNA编辑酶腺苷脱氨酶沉默后,其结合减少了-这表明RNA编辑岛的存在会影响HuR绑定到其目标区域。这些数据表明RNA编辑是RBP-RNA相互作用的重要介体,这种机制可能构成生物系统中转录后基因调控的另一种模式。

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