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Introducing structure-switching functionality into small-molecule-binding aptamers via nuclease-directed truncation

机译:通过核酸酶导向截断将结构切换成结合的适体成结

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摘要

We report a broadly applicable enzyme digestion strategy for introducing structure-switching functionality into small-molecule-binding aptamers. This procedure is based on our discovery that exonuclease III (Exo III) digestion of aptamers is greatly inhibited by target binding. As a demonstration, we perform Exo III digestion of a pre-folded three-way-junction (TWJ)-structured cocaine-binding aptamer and a stem-loop-structured ATP-binding aptamer. In the absence of target, Exo III catalyzes 3'-to-5' digestion of both aptamers to form short, single-stranded products. Upon addition of target, Exo III digestion is halted four bases prior to the target-binding domain, forming a major target-bound aptamer digestion product. We demonstrated that target-binding is crucial for Exo III inhibition. We then determine that the resulting digestion products of both aptamers exhibit a target-induced structure-switching functionality that is absent in the parent aptamer, while still retaining high target-binding affinity. We confirm that these truncated aptamers have this functionality by using an exonuclease I-based digestion assay and further evaluate this characteristic in an electrochemical aptamer-based cocaine sensor and a fluorophore-quencher ATP assay. We believe our Exo III-digestion method should be applicable for the generation of structure-switching aptamers from other TWJ- or stem-loop-containing small-molecule-binding aptamers, greatly simplifying the generation of functionalized sensor elements for folding-based aptasensors.
机译:我们报告了一种广泛适用的酶消化策略,用于将结构切换功能引入小分子结合的适体。该程序基于我们发现的外切核酸酶III(EXO III)消化适体的消化受到靶结合的大大抑制。作为演示,我们执行预折叠的三路接线(TWJ) - 结构化可卡因结合适体和茎环结构的ATP结合适体的EXO III消化。在没有靶的情况下,EXO III催化两个适体的3'-tO-5'消化以形成短,单链产品。在添加靶标后,在靶结合结构域之前,EXO III消化在靶结合结构域之前停止四个碱基,形成主要的靶标型适体消化产物。我们证明靶结合对于EXO III抑制至关重要。然后,我们确定两个适体的所得消化产物表现出在母体适体中不存在的目标诱导的结构切换功能,同时仍保持高靶结合亲和力。我们确认这些截短的适体通过使用基于外切核酸酶I基的消化测定来具有这种功能,并进一步评估电化学适体的可卡因传感器和荧光团-Quenceer ATP测定中的这种特性。我们认为我们的EXO III消化方法应适用于从其他TWJ或含茎环的小分子结合适体的结构切换适体,大大简化了用于折叠基于折叠的APTASENS的功能化传感器元件的产生。

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  • 来源
    《Nucleic Acids Research》 |2018年第13期|共11页
  • 作者单位

    Florida Int Univ Dept Chem &

    Biochem 11200 SW 8th St Miami FL 33199 USA;

    Florida Int Univ Dept Chem &

    Biochem 11200 SW 8th St Miami FL 33199 USA;

    Florida Int Univ Dept Chem &

    Biochem 11200 SW 8th St Miami FL 33199 USA;

    Florida Int Univ Dept Chem &

    Biochem 11200 SW 8th St Miami FL 33199 USA;

    Florida Int Univ Dept Chem &

    Biochem 11200 SW 8th St Miami FL 33199 USA;

    Fuzhou Univ Fujian Prov Key Lab Anal &

    Detect Technol Food Sa Key Lab Anal &

    Detect Food Safety Minist Educ Dept Chem Fuzhou 350108 Fujian Peoples R China;

    Florida Int Univ Dept Chem &

    Biochem 11200 SW 8th St Miami FL 33199 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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