Gorodetsky Alon A, Green Omar, Yavin Eylon, Barton Jacqueline K
Division of Chemistry and Chemical Engineering, California Institute of Technology, Pasadena, California 91125, USA.
Bioconjug Chem. 2007 Sep-Oct;18(5):1434-41. doi: 10.1021/bc0700483. Epub 2007 Jun 20.
The electrochemistry of DNA films modified with different redox probes linked to DNA through saturated and conjugated tethers was investigated. Experiments feature two redox probes bound to DNA on two surfaces: anthraquinone (AQ)-modified uridines incorporated into thiolated DNA on gold (Au) and 2,2,6,6-tetramethylpiperidine 1-oxyl (TEMPO)-modified uridines in pyrene-labeled DNA on highly oriented pyrolytic graphite (HOPG). The electrochemistry of these labels when incorporated into DNA has been examined in DNA films containing both well matched and mismatched DNA. DNA-mediated electrochemistry is found to be effective for the TEMPO probe linked with an acetylene linker but not for a saturated TEMPO connected through an ethylenediamine linker. For the AQ probe, DNA-mediated electrochemistry is found with an acetylene linker to uridine but not with an alkyl chain to the 5' terminus of the oligonucleotide. Large electrochemical signals and effective discrimination of intervening base mismatches are achieved for the probes connected through the acetylene linkages, while probes connected through saturated linkages exhibit small electrochemical signals associated only with direct surface to probe charge transfer and poor mismatch discrimination. Thus DNA electrochemistry with these probes is dramatically influenced by the chemical nature of their linkage to DNA. These results highlight the importance of effective coupling into the pi-stack for long-range DNA-mediated electrochemistry.
研究了通过饱和连接链和共轭连接链与DNA相连的不同氧化还原探针修饰的DNA膜的电化学性质。实验的特点是在两个表面上有两种与DNA结合的氧化还原探针:蒽醌(AQ)修饰的尿苷掺入金(Au)上的硫醇化DNA中,以及2,2,6,6-四甲基哌啶1-氧基(TEMPO)修饰的尿苷存在于高度定向热解石墨(HOPG)上的芘标记DNA中。已在包含匹配良好和错配DNA的DNA膜中研究了这些标记掺入DNA时的电化学性质。发现DNA介导的电化学对于通过乙炔连接链连接的TEMPO探针有效,但对于通过乙二胺连接链连接的饱和TEMPO则无效。对于AQ探针,发现通过与尿苷的乙炔连接链存在DNA介导的电化学,而通过与寡核苷酸5'末端的烷基链连接则不存在。对于通过乙炔连接链连接的探针,实现了大的电化学信号和对中间碱基错配的有效区分,而通过饱和连接链连接的探针则表现出仅与直接的表面到探针电荷转移相关的小电化学信号以及较差的错配区分能力。因此,这些探针的DNA电化学受到其与DNA连接的化学性质的显著影响。这些结果突出了有效耦合到π堆积中对于长程DNA介导的电化学的重要性。