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通过连接 DNA 酶机制检测金属离子 (Cu2+、Hg2+) 和可卡因。

Detection of metal ions (Cu2+, Hg2+) and cocaine by using ligation DNAzyme machinery.

机构信息

Institute of Chemistry, The Minerva Center for Complex Biohybrid Systems, The Hebrew University of Jerusalem, Jerusalem 91904, Israel.

出版信息

Chemistry. 2012 Dec 7;18(50):16030-6. doi: 10.1002/chem.201201479. Epub 2012 Oct 18.

Abstract

The Cu(2+)-dependent ligation DNAzyme is implemented as a biocatalyst for the colorimetric or chemiluminescence detection of Cu(2+) ions, Hg(2+) ions, or cocaine. These sensing platforms are based on the structural tailoring of the sequence of the Cu(2+)-dependent ligation DNAzyme for specific analytes. The tethering of a subunit of the hemin/G-quadruplex DNAzyme to the ligation DNAzyme sequence, and the incorporation of an imidazole-functionalized nucleic-acid sequence, which acts as a co-substrate for the ligation DNAzyme that is tethered to the complementary hemin/G-quadruplex subunit. In the presence of different analytes, Cu(2+) ions, Hg(2+) ions, or cocaine, the pretailored Cu(2+)-dependent ligation DNAzyme sequence stimulates the respective ligation process by combining the imidazole-functionalized co-substrate with the ligation DNAzyme sequence. These reactions lead to the self-assembly of stable hemin/G-quadruplex DNAzyme nanostructures that enable the colorimetric analysis of the substrate through the DNAzyme-catalyzed oxidation of 2,2'-azinobis(3-ethylbenzothiazoline-6-sulfonic acid), ABTS(2-), by H(2)O(2) into the colored product ABTS(·-), or the chemiluminescence detection of the substrate through the DNAzyme-catalyzed oxidation of luminol by H(2)O(2). The detection limits for the sensing of Cu(2+) ions, Hg(2+) ions, and cocaine correspond to 1 nM, 10 nM and 2.5 μM, respectively. These different sensing platforms also reveal impressive selectivities.

摘要

Cu(2+)-依赖的连接 DNA 酶被用作比色法或化学发光检测 Cu(2+)离子、Hg(2+)离子或可卡因的生物催化剂。这些传感平台基于 Cu(2+)-依赖的连接 DNA 酶序列的结构剪裁,用于特定的分析物。亚单位的连接 DNA 酶序列的连接到连接 DNA 酶序列,和整合的咪唑功能化核酸序列,作为连接 DNA 酶的共底物,连接到互补的血红素/G-四链体亚单位。在不同的分析物存在下,Cu(2+)离子、Hg(2+)离子或可卡因,预定制的 Cu(2+)-依赖的连接 DNA 酶序列通过将咪唑功能化的共底物与连接 DNA 酶序列结合,刺激各自的连接过程。这些反应导致稳定的血红素/G-四链体 DNA 酶纳米结构的自组装,通过 DNA 酶催化 2,2'-联氮双(3-乙基苯并噻唑啉-6-磺酸),ABTS(2-),由 H(2)O(2)氧化成有色产物 ABTS(·-),或者通过 DNA 酶催化 H(2)O(2)氧化鲁米诺进行化学发光检测来进行底物的比色分析。用于检测 Cu(2+)离子、Hg(2+)离子和可卡因的传感检测限分别对应于 1 nM、10 nM 和 2.5 μM。这些不同的传感平台也显示出令人印象深刻的选择性。

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