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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 >Toehold-mediated strand displacement reaction-dependent fluorescent strategy for sensitive detection of uracil-DNA glycosylase activity
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Toehold-mediated strand displacement reaction-dependent fluorescent strategy for sensitive detection of uracil-DNA glycosylase activity

机译:Toehold-mediated链置换reaction-dependent荧光的策略敏感的检测uracil-DNA糖基化酶活动

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摘要

Sensitive detection of uracil-DNA glycosylase (UDG) activity is beneficial for evaluating the repairing process of DNA lesions. Here, toehold-mediated strand displacement reaction (TSDR)-dependent fluorescent strategy was constructed for sensitive detection of UDG activity. A single-stranded DNA (ssDNA) probe with two uracil bases and a trigger sequence were designed. A hairpin probe with toehold domain was designed, and a reporter probe was also designed. Under the action of UDG, two uracil bases were removed from ssDNA probe, generating apurinic/apyrimidinic (AP) sites. Then, the AP sites could inhibit the TSDR between ssDNA probe and hairpin probe, leaving the trigger sequence in ssDNA probe still free. Subsequently, the trigger sequence was annealed with the reporter probe, initiating the polymerization and nicking amplification reaction. As a result, numerous G-quadruplex (G4) structures were formed, which could bind with N-methyl-mesoporphyrin IX (NMM) to generate enhanced fluorescent signal. In the absence of UDG, the ssDNA probe could hybridize with the toehold domain of the hairpin probe to initiate TSDR, blocking the trigger sequence, and then the subsequent amplification reaction would not occur. The proposed strategy was successfully implemented for detecting UDG activity with a detection limit of 2.7 x 10(-5) U/mL. Moreover, the strategy could distinguish UDG well from other interference enzymes. Furthermore, the strategy was also applied for detecting UDG activity in HeLa cells lysate with low effect of cellular components. These results indicated that the proposed strategy offered a promising tool for sensitive quantification of UDG activity in UDG-related function study and disease prognosis.
机译:敏感的检测uracil-DNA糖基化酶(UDG)活动是有利于评估修复DNA损伤的过程。toehold-mediated链置换反应(TSDR)端依赖荧光策略构建UDG敏感检测活动。有两个尿嘧啶基地和一个触发器序列设计。设计,和记者调查还设计。UDG的作用下,两个尿嘧啶基地从ssDNA探头,产生apurinic / apyrimidinic(美联社)网站。网站可以抑制TSDR ssDNA探针之间和发夹探针,使触发器序列在ssDNA探测器依然是免费的。引发序列退火与记者调查中,启动聚合和攻击放大反应。G-quadruplex (G4)结构形成可以结合N-methyl-mesoporphyrin第九(NMM)产生增强的荧光信号。没有UDG, ssDNA探针杂交立足域的发夹探针启动TSDR、阻塞引发序列和然后后续放大反应不会发生。实现检测UDG活动了检测极限的2.7 x 10 (5) U /毫升。该战略可以区分UDG好其他干扰酶。策略也适用于检测UDG活动在海拉细胞溶解产物的影响较低蜂窝组件。拟议的战略提供了一个有前途的工具为敏感UDG活动的量化UDG-related功能研究和疾病预后。

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