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One-step enzymatic modification of RNA 3 termini using polymerase

机译:使用聚合酶的RNA 3 Termini的一步酶促改性

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摘要

Site-specific modification of synthetic and cellular RNA such as with specific nucleobases, fluorophores and attachment chemistries is important for a variety of basic and applied research applications. However, simple and efficient methods to modify RNA such as at the 3 terminus with specific nucleobases or nucleotide analogs conjugated to various chemical moieties are lacking. Here, we develop and characterize a one-step enzymatic method to modify RNA 3 termini using recombinant human polymerase theta (Pol). We demonstrate that Polefficiently adds 30-50 2-deoxyribonucleotides to the 3 terminus of RNA molecules of various lengths and sequences, and extends RNA 3 termini with an assortment of 2-deoxy and 2,3-dideoxy ribonucleotide analogs containing functional chemistries, such as high affinity attachment moieties and fluorophores. In contrast to Pol, terminal deoxynucleotidyl transferase (TdT) is unable to use RNA as a substrate altogether. Overall, Polshows a strong preference for adding deoxyribonucleotides to RNA, but can also add ribonucleotides with relatively high efficiency in particular sequence contexts. We anticipate that this unique activity of Polwill become invaluable for applications requiring 3 terminal modification of RNA and potentially enzymatic synthesis of RNA.
机译:特异性地改性合成和细胞RNA,例如具有特异性核碱基,荧光团和附着化学物质对于各种基本和应用的研究应用是重要的。然而,缺乏简单且有效的方法来修饰RNA,例如在具有特定核碱基的3个末端或与各种化学部分缀合的核苷酸类似物的核苷酸类似物。在这里,我们使用重组人聚合酶(Pol)制定和表征一步酶法以改变RNA 3 Termini。我们证明,对于各种长度和序列的RNA分子的3个末端,升极性增加了30-50个2-脱氧核糖核苷酸,并延伸了RNA 3末端,各种含有官能化学的2-脱氧和2,3-二脱氧核糖核苷酸类似物,例如高亲和力附件部分和荧光团。与Pol,末端脱氧核苷酸转移酶(TDT)不能使用RNA作为基材。总体而言,策略偏好对RNA添加脱氧核糖核苷酸的强烈偏好,但也可以在特定序列背景下添加具有相对高效率的核糖核苷酸。我们预计这款Polwill的这种独特活动对于需要3末端改性RNA和潜在酶促合成RNA的应用变得非常无价。

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  • 来源
    《Nucleic Acids Research》 |2019年第7期|共12页
  • 作者单位

    Temple Univ Lewis Katz Sch Med Fels Inst Canc Res Dept Med Genet &

    Mol Biochem Philadelphia PA 19140 USA;

    Temple Univ Lewis Katz Sch Med Fels Inst Canc Res Dept Med Genet &

    Mol Biochem Philadelphia PA 19140 USA;

    Temple Univ Lewis Katz Sch Med Fels Inst Canc Res Dept Med Genet &

    Mol Biochem Philadelphia PA 19140 USA;

    Temple Univ Lewis Katz Sch Med Fels Inst Canc Res Dept Med Genet &

    Mol Biochem Philadelphia PA 19140 USA;

    Temple Univ Lewis Katz Sch Med Fels Inst Canc Res Dept Med Genet &

    Mol Biochem Philadelphia PA 19140 USA;

    European Mol Biol Lab Meyerhofstr 1 D-69117 Heidelberg Germany;

    Temple Univ Lewis Katz Sch Med Fels Inst Canc Res Dept Med Genet &

    Mol Biochem Philadelphia PA 19140 USA;

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  • 原文格式 PDF
  • 正文语种 eng
  • 中图分类 生物化学;
  • 关键词

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