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Stable and Label-Free Fluorescent Probe Based on G-triplex DNA and Thioflavin T

机译:基于G-Triplex DNA和硫蛋白T的无稳定和无标记的荧光探针

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摘要

G-triplexes have recently been identified as a new kind of DNA structures. They perhaps possess specific biological and chemical functions similar as identified G-quadruplex but can be formed by shorter G-rich sequences with only three G-tracts. However, until now, limited G-triplexes sequences have been reported, which might be due to the fact that their stability is one of the biggest concerns during their functional studies and application research. Herein, we found a G-rich sequence (5′-TGGGTAGGGCGGG-3′) which can form a stable G-triplex (Tm ? 60 °C) at room temperature. The stable G-triplex can combine with thioflavin T and function as an efficient fluorescence light-up probe. Comparing with the traditional G-quadruplex based probe, this triplex based probe was easy to be controlled and excited. Finally, the probe was successfully applied into constructing a label-free molecular beacon for miRNA detection. Taking advantage of these abilities of the G-triplex based fluorescent probe, the challenges faced during designing G-rich sequences based fluorescent biosensors can be efficiently solved. These findings provide important information for the future application of G-triplex.
机译:最近鉴定为新型DNA结构的G-Tripleces。它们可能具有与鉴定的G-Quadreplex相似的特定生物学和化学函数,但可以通过仅具有三个G型的G的富含G的序列形成。然而,到目前为止,已经报告了有限的G-Tripleces序列,这可能是由于它们的稳定性是其功能研究和应用研究中最大的问题之一。在此,我们发现富含G的序列(5'-TGGGTAGGGCGGGG-3'),其在室温下可以形成稳定的G-三重(TMα60℃)。稳定的G-三链接可以与硫蛋白T结合,并用作有效的荧光升高探针。与传统的G-QuadflePlex基探头相比,易于控制和激发该基于三醇的探针。最后,成功地应用于构建无标记的分子信标进行miRNA检测。利用基于G-Triplex的荧光探针的这些能力,可以有效地解决设计G的基于荧光生物传感器的富含G的序列期间面临的挑战。这些调查结果为未来的G-Triplex应用提供了重要信息。

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  • 来源
    《Analytical chemistry》 |2018年第5期|共7页
  • 作者单位

    College of Chemistry and Chemical Engineering Gannan Normal University Ganzhou 341000 China;

    College of Chemistry and Chemical Engineering Gannan Normal University Ganzhou 341000 China;

    College of Chemistry and Chemical Engineering Gannan Normal University Ganzhou 341000 China;

    College of Chemistry and Chemical Engineering Gannan Normal University Ganzhou 341000 China;

    College of Chemistry and Chemical Engineering Gannan Normal University Ganzhou 341000 China;

    College of Chemistry and Chemical Engineering Gannan Normal University Ganzhou 341000 China;

    College of Chemistry and Chemical Engineering Gannan Normal University Ganzhou 341000 China;

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  • 原文格式 PDF
  • 正文语种 eng
  • 中图分类 分析化学;
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