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Selective Enrichment of A-to-I Edited Transcripts from Cellular RNA Using Endonuclease V

机译:使用核酸内切酶V从细胞RNA中选择性地富集A至I编辑的转录本

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摘要

Creating accurate maps of A-to-I RNA editing activity is vital to improving our understanding of the biological role of this process and harnessing it as a signal for disease diagnosis. Current RNA sequencing techniques are susceptible to random sampling limitations due to the complexity of the transcriptome and require large amounts of RNA material, specialized instrumentation, and high read counts to accurately interrogate A-to-I editing sites. To address these challenges, we show that Escherichia coli Endonuclease V (eEndoV), an inosine-cleaving enzyme, can be repurposed to bind and isolate A-to-I edited transcripts from cellular RNA. While Mg2+ enables eEndoV to catalyze RNA cleavage, we show that similar levels of Ca2+ instead promote binding of inosine without cleavage and thus enable high affinity capture of inosine in RNA We leverage this capability to demonstrate EndoVIPER-seq (Endonuclease V inosine precipitation enrichment sequencing) as a facile and effective method to enrich A-to-I edited transcripts prior to RNA-seq, producing significant increases in the coverage and detection of identified editing sites. We envision the use of this approach as a straightforward and cost-effective strategy to improve the epitranscriptomic informational density of RNA samples, facilitating a deeper understanding of the functional roles of A-to-I editing.
机译:创建准确的Ato-I RNA编辑图谱对于增进我们对这一过程的生物学作用的理解并将其作为疾病诊断的信号至关重要。由于转录组的复杂性,当前的RNA测序技术容易受到随机采样的限制,并且需要大量的RNA材料,专门的仪器和较高的读取计数才能准确地查询A-I编辑位点。为了解决这些挑战,我们表明,肌苷内切酶大肠杆菌内切核酸酶V(eEndoV)可用于结合并从细胞RNA中分离A-to-I编辑的转录物。虽然Mg2 +可使eEndoV催化RNA裂解,但我们显示类似水平的Ca2 +促进了肌苷的结合而不被裂解,因此能够在RNA中实现肌苷的高亲和力捕获。我们利用这种能力来证明EndoVIPER-seq(核酸内切酶V肌苷沉淀富集测序)作为在RNA-seq之前富集A-to-I编辑的转录本的便捷有效方法,可大大提高覆盖范围和检测已鉴定的编辑位点。我们设想将这种方法用作提高RNA样本的转录组信息密度的一种直接且具有成本效益的策略,以促进对A-to-I编辑功能作用的更深入了解。

著录项

  • 来源
    《Journal of the American Chemical Society》 |2020年第11期|5241-5251|共11页
  • 作者单位

    Department of Chemistry Emory University Atlanta Georgia 30322 United States;

    Emory Integrated Computational Core Emory Integrated Core Facilities Emory University Atlanta Georgia 30322 United States;

    Department of Human Genetics Emory University Atlanta Georgia 30322 United States;

  • 收录信息 美国《科学引文索引》(SCI);美国《工程索引》(EI);美国《生物学医学文摘》(MEDLINE);美国《化学文摘》(CA);
  • 原文格式 PDF
  • 正文语种 eng
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