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New strategy for the synthesis of chemically modified RNA constructs exemplified by hairpin and hammerhead ribozymes.

机译:合成化学修饰的RNA构建体的新策略,以发夹和锤头状核酶为例。

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摘要

The CuAAC reaction (click chemistry) has been used in conjunction with solid-phase synthesis to produce catalytically active hairpin ribozymes around 100 nucleotides in length. Cross-strand ligation through neighboring nucleobases was successful in covalently linking presynthesized RNA strands with high efficiency (trans-ligation). In an alternative strategy, intrastrand click ligation was employed to produce a functional hammerhead ribozyme containing a novel nucleic acid backbone mimic at the catalytic site (cis-ligation). The ability to synthesize long RNA strands by a combination of solid-phase synthesis and click ligation is an important addition to RNA chemistry. It is compatible with a plethora of site-specific modifications and is applicable to the synthesis of many biologically important RNA molecules.
机译:CuAAC反应(单击化学)已与固相合成结合使用,以产生长度约100个核苷酸的催化活性发夹状核酶。通过相邻核碱基的跨链连接成功地高效共价连接了预先合成的RNA链(反式连接)。在替代策略中,使用链内点击连接来产生功能性锤头状核酶,其在催化位点包含模拟的新核酸主链(顺式连接)。通过固相合成和点击连接的组合来合成长RNA链的能力是RNA化学的重要补充。它与多种位点特异性修饰兼容,并且适用于许多生物学上重要的RNA分子的合成。

著录项

  • 作者

    El-Sagheer, AH; Brown, T;

  • 作者单位
  • 年度 2010
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  • 原文格式 PDF
  • 正文语种 eng
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