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Site-Selective RNA Functionalization via DNA-lnduced Structure

机译:通过DNA-LNDuced结构选择性RNA官能化

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摘要

Methods for RNA functionalization at specific sites are in high demand but remain a challenge, particularly for RNAs produced by transcription rather than by total synthesis. Recent studies have described acylimidazole reagents that react in high yields at 2'-OH groups stochastically at nonbase-paired regions, covering much of the RNA in scattered acyl esters. Localized reactions, if possible, could prove useful in many applications, providing functional handles at specific sites and sequences of the biopolymer. Here, we describe a DNA-directed strategy for in vitro functionalization of RNA at site-localized 2'-OH groups. The method, RNA Acylation at Induced Loops (RAIL), utilizes complementary helper DNA oligonucleotides that expose gaps or loops at selected positions while protecting the remainder in DNA-RNA duplexes. Reaction with an acylimidazole reagent is then carried out, providing high yields of 2'-OH conjugation at predetermined sites. Experiments reveal optimal helper oligodeoxynucleotide designs and conditions for the reaction, and tests of the approach are carried out to control localized ribozyme activities and to label RNAs with dual-color fluorescent dyes. The RAIL approach offers a simple and novel strategy for site-selective labeling and control of RNAs, potentially of any length and origin.
机译:特定位点的RNA官能化的方法高,需求高,但仍然是一种挑战,特别是对于通过转录而不是通过总合成产生的RNA。最近的研究描述了酰基咪唑试剂,其在非比基对区域随机的2'-OH基团以高产率反应,覆盖散射酰基酯中的大部分RNA。如果可能的话,局部反应可以在许多应用中证明是有用的,提供在生物聚合物的特定位点和序列中的功能手柄。在这里,我们描述了在位点局部的2'-OH基团中RNA体外官能化的DNA导向策略。该方法,诱导环(轨)的RNA酰化,利用互补辅助DNA寡核苷酸,其在选定位置处暴露间隙或环路,同时保护剩余部分在DNA-RNA双链体中。然后进行与酰基咪唑试剂的反应,在预定位点处提供高产率为2'-OH缀合。实验揭示了最佳辅助寡核苷酸的反应设计和条件,并进行了方法的测试,以控制局部核酶活性并用双色荧光染料标记RNA。铁路方法提供了一种简单而新颖的策略,可用于网站选择性标签和控制RNA,可能是任何长度和起源。

著录项

  • 来源
    《Journal of the American Chemical Society》 |2020年第38期|16357-16363|共7页
  • 作者单位

    Department of Chemistry ChEM-H Institute and Stanford Cancer Institute Stanford University Stanford California 94305 United States;

    Department of Chemistry ChEM-H Institute and Stanford Cancer Institute Stanford University Stanford California 9430S United States;

    Department of Chemistry ChEM-H Institute and Stanford Cancer Institute Stanford University Stanford California 94305 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
  • 中图分类
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  • 入库时间 2022-08-18 22:16:53

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