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基于双功能钌配合物的DNA单错配位置敏感检测

Single-mismatch position-sensitive detection of DNA based on a bifunctional ruthenium complex.

作者信息

García T, Revenga-Parra M, Abruña H D, Pariente F, Lorenzo E

机构信息

Departamento de Química Analítica y Análisis Instrumental, Facultad de Ciencias, Universidad Autónoma de Madrid, Madrid 28049, Spain.

出版信息

Anal Chem. 2008 Jan 1;80(1):77-84. doi: 10.1021/ac071095r. Epub 2007 Nov 22.

Abstract

A ruthenium complex, pentaamine ruthenium [3-(2-phenanthren-9-yl-vinyl)-pyridine] (which we refer to as RuL in the text) generated in situ has been used as a sensitive and selective electrochemical indicator in DNA sensing. The complex incorporates dual functionalities with the Ru center providing a redox probe and the ligand (L) providing a fluorescent tag. The presence of the aromatic groups in the ligand endows the complex with an intercalative character and makes it capable of binding to double-stranded DNA (dsDNA) more efficiently than to single-stranded DNA (ssDNA). Combining spectroscopic and electrochemical techniques, we have elucidated the nature of the interactions. From these data we conclude that the binding mode is fundamentally intercalative. The ligand-based fluorescence allows characterization of the complex formation as well as for melting experiments to be carried out. The metal-based redox center is employed as an electrochemical indicator to detect the hybridization event in a DNA biosensor. The biosensor has been developed by immobilization of a thiolated capture probe sequence from Helicobacter pylori onto gold electrodes. With the use of this approach, complementary target sequences of Helicobacter can be quantified over the range of 106 to 708 pmol with a detection limit of 92+/-0.4 pmol and a linear correlation coefficient of 0.995. In addition, this approach allows the detection, without the need for a hybridization suppressor in solution, such as formamide, of not only a single mismatch but also its position in a specific sequence of H. pylori, due to the selective interaction of this bifunctional ruthenium complex with dsDNA.

摘要

一种原位生成的钌配合物,五氨合钌[3-(2-菲-9-基-乙烯基)-吡啶](在本文中我们将其称为RuL)已被用作DNA传感中的灵敏且选择性的电化学指示剂。该配合物兼具双重功能,Ru中心提供一个氧化还原探针,配体(L)提供一个荧光标签。配体中芳香基团的存在赋予配合物插入特性,使其与双链DNA(dsDNA)的结合效率高于单链DNA(ssDNA)。结合光谱和电化学技术,我们阐明了相互作用的本质。从这些数据我们得出结论,结合模式从根本上说是插入式的。基于配体的荧光可用于表征配合物的形成以及进行熔解实验。基于金属的氧化还原中心用作电化学指示剂来检测DNA生物传感器中的杂交事件。该生物传感器是通过将来自幽门螺杆菌的硫醇化捕获探针序列固定在金电极上而开发的。使用这种方法,幽门螺杆菌的互补靶序列在106至708 pmol范围内可被定量,检测限为92±0.4 pmol,线性相关系数为0.995。此外,由于这种双功能钌配合物与dsDNA的选择性相互作用,这种方法无需在溶液中使用杂交抑制剂(如甲酰胺),不仅可以检测单个错配,还能检测其在幽门螺杆菌特定序列中的位置。

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