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首页> 外文期刊>Biosensors & Bioelectronics: The International Journal for the Professional Involved with Research, Technology and Applications of Biosensers and Related Devices >Label-free and sensitive detection of T4 polynucleotide kinase activity via coupling DNA strand displacement reaction with enzymatic-aided amplification
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Label-free and sensitive detection of T4 polynucleotide kinase activity via coupling DNA strand displacement reaction with enzymatic-aided amplification

机译:通过DNA链置换反应与酶促扩增偶联,对T4多核苷酸激酶活性进行无标记灵敏检测

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摘要

Several fluorescence signal amplification strategies have been developed for sensitive detection of 14 polynucleotide kinase (T4 PNK) activity, but they need fluorescence dye labeled DNA probe. We have addressed the limitation and report here a label-free strategy for sensitive detection of PNK activity by coupling DNA strand displacement reaction with enzymatic-aided amplification. A hairpin oligonucleotide (hpDNA) with blunt ends was used as the substrate for T4 PNK phosphorylation. In the presence of T4 PNK, the stem of hpDNA was phosphorylated and further degraded by lambda exonuclease (lambda exo) from 5' to 3' direction to release a single-stranded DNA as a trigger of DNA strand displacement reaction (SDR). The trigger DNA can continuously displace DNA P2 from P1/P2 hybrid with the help of specific cleavage of nicking endonuclease (Nt.BbvCI). Then, DNA P2 can form G-quadruplex in the presence of potassium ions and quadruplex-selective fluorphore, N-methyl mesoporphyrin IX (NMM), resulting in a significant increase in fluorescence intensity of NMM. Thus, the accumulative release of DNA P2 led to fluorescence signal amplification for determining T4 PNK activity with a detection limit of 6.6 x 10(-4) U/mL, which is superior or comparative with established approaches. By ingeniously utilizing 14 PNK-triggered DNA SDR, 14 PNK activity can be specifically and facilely studied in homogeneous solution containing complex matrix without any external fluorescence labeling. Moreover, the influence of different inhibitors on the T4 PNK activity revealed that it also can be explored to screen 14 PNK inhibitors. Therefore, this label-free amplification strategy presents a facile and cost-effective approach for nucleic acid phosphorylation related research. (C) 2015 Elsevier B.V. All rights reserved.
机译:已经开发了几种荧光信号放大策略来灵敏地检测14种多核苷酸激酶(T4 PNK)活性,但它们需要荧光染料标记的DNA探针。我们已经解决了局限性,在此报告了一种无标记的策略,通过将DNA链置换反应与酶促扩增偶联来灵敏地检测PNK活性。具有平末端的发夹寡核苷酸(hpDNA)被用作T4 PNK磷酸化的底物。在存在T4 PNK的情况下,hpDNA的茎被磷酸化,并被lambda核酸外切酶(lambda exo)从5'到3'方向进一步降解,从而释放单链DNA,从而触发DNA链置换反应(SDR)。触发DNA可以在切口内切核酸酶(Nt.BbvCI)的特异性切割的帮助下,连续从P1 / P2杂种中置换DNA P2。然后,DNA P2可以在钾离子和四重选择性荧光团N-甲基中卟啉IX(NMM)的存在下形成G-四重合物,从而显着增加NMM的荧光强度。因此,DNA P2的累积释放导致荧光信号放大,用于确定T4 PNK活性,检测极限为6.6 x 10(-4)U / mL,这与已建立的方法相比更为优越或可比。通过巧妙地利用14个PNK触发的DNA SDR,可以在不包含任何外部荧光标记的包含复杂基质的均相溶液中特异性和轻松地研究14 PNK活性。此外,不同抑制剂对T4 PNK活性的影响表明,还可探索筛选14种PNK抑制剂。因此,这种无标记的扩增策略为核酸磷酸化相关研究提供了一种简便且经济高效的方法。 (C)2015 Elsevier B.V.保留所有权利。

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