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首页> 外文期刊>Analytical chemistry >Endonucleolytic Inhibition Assay of DNA/Fok I Transducer as a Sensitive Platform for Homogeneous Fluorescence Detection of Small Molecule-Protein Interactions
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Endonucleolytic Inhibition Assay of DNA/Fok I Transducer as a Sensitive Platform for Homogeneous Fluorescence Detection of Small Molecule-Protein Interactions

机译:DNA / Fok I传感器作为小分子-蛋白质相互作用均相荧光检测的敏感平台的核酸内切抑制测定

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摘要

This paper reported a novel homogeneous fluorescence assay strategy for probing small molecule-protein interactions based on endonucleolytic inhibition of a DNA/Fok I transducer. The transducer could cyclically cleave fluorescence-quenched probes to yield activated fluorescence signal, while protein binding to the small molecule label would prevent Fok I from approaching and cleaving the fluorescence-quenched probes. Because of the efficient signal amplification from the cyclic cleavage operation, the developed strategy could offer high sensitivity for detecting small molecule-protein interactions. This strategy was demonstrated using folate and its high-affinity or low-affinity binding proteins. The results revealed that the developed strategy was highly sensitive for detecting either high- or low-affinity small molecule-protein interactions with improved selectivity against nonspecific protein adsorption. This strategy could also be extended for assays of candidate small-molecule ligands using a competitive assay format. Moreover, this strategy only required labeling the small molecule on a DNA heteroduplex, circumventing protein modifications that might be harmful for activity. In view of these advantages, this new method could have potential to become a universal, sensitive, and selective platform for quantitative assays of small molecule-protein interactions.
机译:本文报道了一种新颖的均相荧光测定策略,用于基于核酸内切抑制DNA / Fok I换能器来探测小分子-蛋白质相互作用。换能器可以循环切割荧光猝灭探针以产生激活的荧光信号,而蛋白质与小分子标记的结合将阻止Fok I接近并切割荧光猝灭探针。由于从循环裂解操作有效的信号放大,开发的策略可以为检测小分子-蛋白质相互作用提供高灵敏度。使用叶酸及其高亲和力或低亲和力结合蛋白证明了该策略。结果表明,开发的策略对检测高亲和力或低亲和力的小分子-蛋白质相互作用具有很高的灵敏度,并且对非特异性蛋白质吸附的选择性提高了。这种策略也可以扩展到使用竞争性分析形式的候选小分子配体的分析中。此外,该策略仅需要在DNA异源双链体上标记小分子,从而规避可能对活性有害的蛋白质修饰。鉴于这些优点,这种新方法可能有可能成为用于小分子-蛋白质相互作用定量分析的通用,灵敏和选择性平台。

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