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基于空位探针法的无标记荧光功能化 DNA 传感器的研究

Label-free fluorescent functional DNA sensors using unmodified DNA: a vacant site approach.

机构信息

Department of Chemistry, University of Illinois at Urbana-Champaign, Urbana, Illinois 61801, USA.

出版信息

Anal Chem. 2010 May 15;82(10):4122-9. doi: 10.1021/ac100244h.

Abstract

A general methodology to design label-free fluorescent functional DNA sensors using unmodified DNA via a vacant site approach is described. By extending one end of DNA with a loop, a vacant site that binds an extrinsic fluorophore, 2-amino-5,6,7-trimethyl-1,8-naphthyridine (ATMND), could be created at a selected position in the DNA duplex region of DNAzymes or aptamers. When the vacant site binds ATMND, ATMND's fluorescence is quenched. This fluorescence can be recovered when one strand of the duplex DNA is released through either metal ion-dependent cleavage by DNAzymes or analyte-dependent structural-switching by aptamers. Through this design, label-free fluorescent sensors for Pb(2+), UO(2)(2+), Hg(2+), and adenosine have been successfully developed. These sensors have high selectivity and sensitivity; detection limits as low as 3 nM, 8 nM, 30 nM, and 6 microM have been achieved for UO(2)(2+), Pb(2+), Hg(2+) and adenosine, respectively. Control experiments using vacant-site-free DNA duplexes and inactive variants of the functional DNAs indicate that the presence of the vacant site and the activity of the functional DNAs are essential for the performance of the proposed sensors. The vacant site approach demonstrated here can be used to design many other label-free fluorescent sensors to detect a wide range of analytes.

摘要

描述了一种使用未修饰的 DNA 通过空位方法设计无标记荧光功能 DNA 传感器的通用方法。通过将 DNA 的一端延伸成一个环,可以在 DNA 酶或适体的 DNA 双螺旋区域的选定位置创建一个结合外源性荧光团 2-氨基-5,6,7-三甲基-1,8-萘啶(ATMND)的空位。当空位结合 ATMND 时,ATMND 的荧光被猝灭。当双链 DNA 的一条链通过 DNA 酶的金属离子依赖性切割或适体的分析物依赖性结构切换释放时,这种荧光可以恢复。通过这种设计,成功开发了用于 Pb(2+)、UO(2)(2+)、Hg(2+)和腺苷的无标记荧光传感器。这些传感器具有高选择性和灵敏度;对于 UO(2)(2+)、Pb(2+)、Hg(2+) 和腺苷,检测限分别低至 3 nM、8 nM、30 nM 和 6 microM。使用无空位 DNA 双链体和功能 DNA 的无活性变体的对照实验表明,空位的存在和功能 DNA 的活性对于所提出的传感器的性能至关重要。这里展示的空位方法可用于设计许多其他无标记荧光传感器来检测广泛的分析物。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/f70b/2884042/c587cfaa4677/nihms200695f1.jpg

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