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首页> 外文期刊>Talanta: The International Journal of Pure and Applied Analytical Chemistry >Homogeneous label-free protein binding assay using small-molecule-labeled DNA nanomachine with DNAzyme-Based chemiluminescence detection
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Homogeneous label-free protein binding assay using small-molecule-labeled DNA nanomachine with DNAzyme-Based chemiluminescence detection

机译:使用具有DNAzyme的化学发光检测的小分子标记的DNA纳米机的均匀标记蛋白结合测定

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摘要

Detecting the interactions between small molecules and proteins was critical for disease theranostics and drug development. Here we propose a novel universal assay strategy for monitoring small molecule-protein interactions in solution using strand displacement amplification (SDA) mediated by protein binding to small molecule with DNAzyme-based chemiluminescence detection. The DNA polymerase and nicking enzyme assisted SDA could yield a great amount of peroxidase-mimicking DNAzyme sequences which cause significantly chemiluminescence signals, while protein binding to the small molecule label would prevent DNA polymerase from extending nick site and DNAzyme sequence, and thus the chemiluminescence signals would obviously decrease. This strategy was demonstrated using folate and its binding protein (folate receptor), and the results revealed that the developed strategy enable offer a label-free, homogeneous, and highly sensitive chemiluminescence detection of folate receptor with a detection limit of 1pM. At the same time, it has been successfully used for folate receptor detection in human serum. The proposed chemiluminescence sensing method might provide a generic, robust, and high-throughput platform for detecting various small molecule-protein interactions for biological applications.
机译:检测小分子与蛋白质之间的相互作用对于疾病治疗和药物发育至关重要。在这里,我们提出了一种新的通用测定策略,用于使用蛋白质与基于DNAzyme基化学发光检测的小分子介导的蛋白质结合介导的链溶剂扩增(SDA)来监测溶液中的小分子蛋白质相互作用。 DNA聚合酶和切口酶辅助SDA可以产生大量的过氧化物酶模拟DNazyme序列,其引起显着的化学发光信号,而蛋白质与小分子标记的结合将防止DNA聚合酶延伸缺口位点和DNAzyme序列,从而防止化学发光信号显然会减少。使用叶酸及其结合蛋白(叶酸受体)证明了该策略,结果表明,发育策略使得能够提供叶酸受体的无标记,均匀和高敏感的化学发光,检测为下午1点的检出限。与此同时,已成功用于人血清中的叶酸受体检测。所提出的化学发光感测方法可以提供通用,鲁棒和高通量平台,用于检测用于生物应用的各种小分子蛋白质相互作用。

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