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基于 G-四链体的 S1 核酸酶活性和 K+荧光检测法

G-quadruplex-based fluorescent assay of S1 nuclease activity and K+.

机构信息

State Key Laboratory of Electroanalytical Chemistry, Changchun Institute of Applied Chemistry, Chinese Academy of Sciences, Changchun, Jilin 130022, PR China.

出版信息

Anal Chem. 2013 Feb 19;85(4):2431-5. doi: 10.1021/ac303440d. Epub 2013 Jan 28.

Abstract

Endonuclease plays an important role in many biological processes, and an assay of endonuclease activity is of great significance. However, traditional methods for the assay of endonuclease activity have undesirable limitations, such as high cost, DNA-consuming and laboriousness. In the present work, a G-quadruplex-based, fluorescent assay of endonuclease activity has been developed with protoporphyrin IX (PPIX) as a signal reporter. S1 nuclease, a single strand DNA (ssDNA)-specific endonuclease, is employed as model system. In the "on" state, G-quadruplex DNA can greatly enhance the fluorescence of PPIX. However, if S1 nuclease could cleave G-quadruplex DNA into small fragments, there would be no formation of G-quadruplexes, accompanied by low emission response of PPIX. This fluorescent discrimination before or after digestion by nuclease can be used to monitor the activity of S1 nuclease. This assay is simple in design and offers a convenient protocol for homogeneous, rapid and high-throughput detection. In addition, the proposed strategy avoids complicated covalent modifications or chemical labeling, and thus offers advantages of simplicity and cost efficiency. More importantly, K(+) is found to well inhibit the activity of S1 nuclease when using certain G-quadruplex DNA as substrate, and thus this system is further used for turn-on detection of K(+). S1 nuclease is critical in the detection of K(+) since it helps to reduce the background signal.

摘要

核酸内切酶在许多生物过程中发挥着重要作用,因此对核酸内切酶活性的检测具有重要意义。然而,传统的核酸内切酶活性检测方法存在一些不理想的局限性,例如成本高、需要消耗大量 DNA 以及操作繁琐。在本工作中,我们以原卟啉 IX(PPIX)为信号报告分子,建立了一种基于 G-四链体的荧光核酸内切酶活性检测方法。我们选择 S1 核酸酶(一种单链 DNA(ssDNA)特异性核酸内切酶)作为模型体系。在“开启”状态下,G-四链体 DNA 可以极大地增强 PPIX 的荧光强度。然而,如果 S1 核酸酶能够将 G-四链体 DNA 切割成小片段,就不会形成 G-四链体,同时 PPIX 的发射响应也会降低。这种在消化前后通过核酸酶进行的荧光区分可用于监测 S1 核酸酶的活性。该检测方法设计简单,提供了一种用于均相、快速和高通量检测的简便方案。此外,该策略避免了复杂的共价修饰或化学标记,因此具有简单和经济高效的优势。更重要的是,我们发现当使用特定的 G-四链体 DNA 作为底物时,K(+) 可以很好地抑制 S1 核酸酶的活性,因此该系统可进一步用于 K(+) 的开启型检测。由于 S1 核酸酶有助于降低背景信号,因此在检测 K(+) 时它是至关重要的。

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