化学
荧光
DNA糖基化酶
结扎
核酸外切酶 III
DNA
分子信标
生物物理学
组合化学
分子生物学
DNA损伤
生物化学
寡核苷酸
基因
物理
生物
大肠杆菌
量子力学
作者
Huige Zhang,Fengyun Li,Lili Wang,Shuai Shao,Hongli Chen,Xingguo Chen
出处
期刊:Talanta
[Elsevier]
日期:2020-12-01
卷期号:220: 121422-121422
被引量:14
标识
DOI:10.1016/j.talanta.2020.121422
摘要
Abnormal DNA glycosylases are concerned with the aging process as well as numerous pathologies in humans. Herein, a sensitive fluorescence method utilizing target-induced ligation-dependent tricyclic cascade amplification reaction was developed for the detecting DNA glycosylase activity. The presence of DNA glycosylase triggered the cleavage of damaged base in hairpin substrate, successively activating ligation-dependent strand displacement amplification (SDA) and exponential amplification reaction (EXPAR) for the generation of large amount of reporter probes. The resultant reporter probes bound with the signal probes to form stable dsDNA duplexes. And then the signal probes could be digested circularly in the dsDNA duplexes by T7 exonuclease, leading to the generation of an enhanced fluorescence signal. Due to the high efficiency of tricyclic cascade amplification and the low background signal deriving from the inhibition of nonspecific amplification, this method exhibited a detection limit of 0.14 U/mL and a dynamic range from 0.16 to 8.0 U/mL. Moreover, it could be applied for detecting DNA glycosylase activity in human serum with good selectivity and high sensitivity, and even quantifying other types of enzyme with 5′-PO4 residue cleavage product by rationally designing the corresponding substrate. Importantly, this method could be performed in homogenous solution without any complicated separation steps, providing a new strategy for DNA glycosylase-related biomedical research.
科研通智能强力驱动
Strongly Powered by AbleSci AI