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金属离子依赖性DNA酶及其作为生物传感器的应用。

Metal ion-dependent DNAzymes and their applications as biosensors.

作者信息

Lan Tian, Lu Yi

机构信息

Department of Biochemistry, University of Illinois, Urbana, IL 61801, USA.

出版信息

Met Ions Life Sci. 2012;10:217-48. doi: 10.1007/978-94-007-2172-2_8.

Abstract

Long considered to serve solely as the genetic information carrier, DNA has been shown in 1994 to be able to act as DNA catalysts capable of catalyzing a trans-esterification reaction similar to the action of ribozymes and protein enzymes. Although not yet found in nature, numerous DNAzymes have been isolated through in vitro selection for catalyzing many different types of reactions in the presence of different metal ions and thus become a new class of metalloenzymes. What remains unclear is how DNA can carry out catalysis with simpler building blocks and fewer functional groups than ribozymes and protein enzymes and how DNA can bind metal ions specifically to perform these functions. In the past two decades, many biochemical and biophysical studies have been carried out on DNAzymes, especially RNA-cleaving DNAzymes. Important insights have been gained regarding their metal-dependent activity, global folding, metal binding sites, and catalytic mechanisms for these DNAzymes. Because of their high metal ion selectivity, one of the most important practical applications for DNAzymes is metal ion detection, resulting in highly sensitive and selective fluorescent, colorimetric, and electrochemical sensors for a wide range of metal ions such as Pb(2+), UO2 2 +,[Formula: see text] including paramagnetic metal ions such as Cu(2+). This chapter summarizes recent progresses in in vitro selection of metal ion-selective DNAzymes, their biochemical and biophysical studies and sensing applications.

摘要

长期以来,DNA一直被认为仅作为遗传信息载体,然而在1994年,它被证明能够作为DNA催化剂,催化类似于核酶和蛋白质酶作用的转酯反应。尽管在自然界中尚未发现,但通过体外筛选已分离出许多DNA酶,它们在不同金属离子存在下能够催化多种不同类型的反应,从而成为一类新型金属酶。目前尚不清楚的是,与核酶和蛋白质酶相比,DNA如何能用更简单的构建单元和更少的官能团进行催化,以及DNA如何特异性结合金属离子来执行这些功能。在过去二十年中,对DNA酶,尤其是RNA切割DNA酶,进行了许多生物化学和生物物理研究。关于它们的金属依赖性活性、整体折叠、金属结合位点以及这些DNA酶的催化机制,已经获得了重要的见解。由于其对金属离子的高选择性,DNA酶最重要的实际应用之一是金属离子检测,从而产生了用于检测多种金属离子(如Pb(2+)、UO2 2 +、[化学式:见原文],包括顺磁性金属离子如Cu(2+))的高灵敏度和高选择性荧光、比色和电化学传感器。本章总结了金属离子选择性DNA酶体外筛选、其生物化学和生物物理研究以及传感应用方面的最新进展。

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