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A label-free and sensitive fluorescence strategy for screening ligands binding to poly(dA) based on exonuclease I-assisted background noise reduction

机译:基于核酸外切酶I辅助背景降噪的无标记灵敏荧光策略,用于筛选与poly(dA)结合的配体

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A simple, rapid, label-free, and sensitive fluorescence strategy has been developed for screening the ligands binding to poly(dA) based on exonuclease I-assisted background noise reduction. In this strategy, we have designed 16-repeat deoxyribonucleic acids (A16) as a DNA probe and a double-stranded-chelating dye SYBR Green I (SG I) as a fluorescence dye. Exonuclease I (Exo I), a sequence-independent nuclease, was selected to digest the single-stranded DNA probe to minimize the background fluorescence signal. As a result, in the absence of the target molecular coralyne, A16 is digested by Exo I from its 3a€2 end. This leads to low background fluorescence due to the weak electrostatic interaction between SG I and mononucleotides (dA). On the other hand, the presence of coralyne can induce the single-stranded A16 to form the homo-adenine DNA duplex, and Exo I is inactive to this duplex structure, resulting in a remarkable fluorescence response. Upon background noise reduction, the sensitivity is improved significantly, with a detection limit of 3.5 nM, which is much lower than almost all the previously reported methods. Moreover, this method could extend the application to recognition interaction between ligands and functional nucleic acids and it could find wide applications in the screening of potential therapeutic molecules.
机译:已经开发了一种简单,快速,无标记且灵敏的荧光策略,用于基于核酸外切酶I辅助的背景降噪筛选与poly(dA)结合的配体。在这种策略中,我们设计了16个重复的脱氧核糖核酸(A16)作为DNA探针,并设计了双链螯合染料SYBR Green I(SG I)作为荧光染料。选择核酸外切酶I(Exo I),一种不依赖序列的核酸酶,以消化单链DNA探针,以使背景荧光信号最小化。结果,在没有目标分子珊瑚素的情况下,A16被Exo I从其3a€2末端消化。由于SG I和单核苷酸(dA)之间弱的静电相互作用,导致背景荧光较低。另一方面,coralyne的存在可以诱导单链A16形成高腺嘌呤DNA双链体,而Exo I对这种双链体结构没有活性,从而导致明显的荧光反应。降低背景噪音后,灵敏度显着提高,检测极限为3.5 nM,远低于几乎所有先前报道的方法。而且,该方法可以将应用扩展到配体与功能核酸之间的识别相互作用,并且可以在筛选潜在治疗分子中找到广泛的应用。

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