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Functional nucleic acids as molecular recognition elements for small organic and biological molecules

机译:功能性核酸作为有机和生物小分子的分子识别元件

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摘要

The abundance of small molecules in biological systems, the wide-spread usage of synthetic small molecules as drugs and biological probes, and the escalation of industrial pollutants in our environment, underscore the importance of detection of small molecules for many disciplines. Functional nucleic acids (FNAs) are single-stranded DNA or RNA sequences that are capable of carrying out ligand binding (aptamers), catalysis (nucleic acid enzymes) or both functions (aptazymes). Many FNAs have been shown to be suitable molecular recognition elements for small-molecule targets. In this article, we will present a focused review on FNAs for small molecule binding and detection. First, we will discuss the technique of "in vitro selection" by which artificial FNAs can be isolated from random-sequence DNA or RNA pools. This will be followed by a survey of aptamers for small molecules isolated to date. Next, the diverse functions of natural aptamers, as part of riboswitches (metabolite-sensing RNA regulatory systems that exist in many organisms) will be explored. Efforts in creating aptazymes will also be presented. Finally, we will examine numerous applications of aptamers and aptazymes in the development of fluorescent, colorimetric and electrochemical biosensors and discuss some emerging applications concerning FNAs.
机译:生物系统中小分子的丰富,合成小分子作为药物和生物探针的广泛使用以及环境中工业污染物的升级,凸显了在许多学科中检测小分子的重要性。功能性核酸(FNA)是单链DNA或RNA序列,能够执行配体结合(适体),催化(核酸酶)或两种功能(适体酶)。已经证明许多FNA是适用于小分子靶标的分子识别元件。在本文中,我们将针对小分子结合和检测的FNA进行重点综述。首先,我们将讨论“体外选择”技术,通过该技术可以从随机序列DNA或RNA池中分离出人工FNA。接下来将对迄今为止分离出的小分子的适体进行调查。接下来,将探索天然适体的多种功能,作为核糖开关(许多生物中存在的代谢物感应RNA调节系统)的一部分。还将介绍创建aptazyme的工作。最后,我们将研究适体和适体在荧光,比色和电化学生物传感器开发中的众多应用,并讨论一些有关FNA的新兴应用。

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