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Sensitive and specific detection of proteins based on target-responsive DNA polymerase activity

机译:基于靶响应性DNA聚合酶活性的蛋白质敏感和特异性检测

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We herein describe a novel method for the detection of target protein based on the target-responsive DNA polymerase activity. In the sensor, two different types of DNA aptamers with the respective functions: one binds to the target protein and the other binds to DNA polymerase, are rationally engineered and combined to form the detection probe that regulates DNA polymerase activity in response to the target protein. In the presence of target protein, the detection probe becomes destabilized and stops the inhibition of DNA polymerase activity. Consequently, the active DNA polymerase initiates the primer extension reaction on the target-specific DNA aptamer, which recycles the target protein to promote another activation cycle of DNA polymerase. In addition, DNA polymerase also catalyzes the primer extension reaction on the primer/template complex in conjugation with TaqMan probe, leading to the significantly enhanced fluorescence intensities. With this novel strategy, we detected a model target protein, lysozyme with a limit of detection as low as 0.80 nM. In addition, the practical applicability of this system was successfully demonstrated by determining lysozyme in human serum. (C) 2019 Elsevier B.V. All rights reserved.
机译:我们在本文中描述了基于目标响应性DNA聚合酶的靶蛋白检测的新方法。在传感器中,两种不同类型的具有相应功能的DNA适体:一种与目标蛋白质结合,其它与DNA聚合酶结合,合理地改造并组合以形成响应于靶蛋白的DNA聚合酶活性的检测探针。在靶蛋白质存在下,检测探针变得不稳定并停止抑制DNA聚合酶活性。因此,活性DNA聚合酶引发对靶特异性DNA适体的引物延伸反应,其循环靶蛋白以促进DNA聚合酶的另一种活化循环。此外,DNA聚合酶还催化在与Taqman探针缀合的引物/模板复合物上的引物延伸反应,导致显着增强的荧光强度。通过这种新的策略,我们检测到模型靶蛋白,溶菌酶,其检测限低至0.80nm。此外,通过确定人血清中的溶菌酶成功地证明了该系统的实际适用性。 (c)2019年Elsevier B.V.保留所有权利。

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