Interdisciplinary Nanoscience Center, Aarhus University, Gustav Wieds Vej 1590-14, DK-8000 Aarhus C, Denmark.
J Am Chem Soc. 2012 Sep 5;134(35):14499-507. doi: 10.1021/ja304864w. Epub 2012 Aug 23.
Electron transfer (ET) between gold electrodes and redox-labeled DNA duplexes, immobilized onto the electrodes through the alkanethiol linker at the 3'-end and having internal either methylene blue (MB) or anthraquinone (AQ) redox labels, was shown to depend on the redox label charge and the way the redox label is linked to DNA. For loosely packed DNA monolayers, the conjugation of the positively charged MB to DNA through the long and flexible alkane linker provided ET whose kinetics was formally governed by the diffusion of the redox label to the negatively charged electrode surface. For the uncharged AQ label no ET signal was detected. The conjugation of AQ to DNA through the short and more conductive acetylene linker did not provide the anticipated DNA-mediated ET to the AQ-moiety: ET appeared to be low-efficient if any in the studied system, for which no intercalation of AQ within the DNA duplex occurred. The ET communication between the electrode and AQ, built in DNA through the acetylene linker, was achieved only when Ru(NH(3))(6)(3+) molecules were electrostatically attached to the DNA duplex, thus forming the electronic wire. These results are of particular importance both for the fundamental understanding of the interfacial behavior of the redox labeled DNA on electrodes and for the design of biosensors exploiting a variation of ET properties of DNA in the course of hybridization.
金电极与通过 3'-端的烷硫醇接头固定在电极上的氧化还原标记 DNA 双链体之间的电子转移 (ET) 取决于氧化还原标记电荷和氧化还原标记与 DNA 的连接方式。对于松散堆积的 DNA 单层,通过长而灵活的烷烃接头将带正电荷的 MB 与 DNA 缀合提供了 ET,其动力学形式上受氧化还原标记扩散到带负电荷的电极表面的控制。对于不带电荷的 AQ 标记,未检测到 ET 信号。通过短而更具导电性的乙炔接头将 AQ 与 DNA 缀合并没有提供预期的 AQ 部分介导的 ET:在研究的系统中,ET 似乎效率很低,如果有的话,因为 AQ 没有在 DNA 双链体内插入。只有当 Ru(NH(3))(6)(3+)分子通过静电吸附到 DNA 双链体上,从而形成电子线时,通过乙炔接头在 DNA 中构建的电极和 AQ 之间的 ET 通讯才得以实现。这些结果对于理解电极上氧化还原标记 DNA 的界面行为以及设计利用杂交过程中 DNA 的 ET 性质变化的生物传感器都具有特别重要的意义。