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通过氧化还原DNA链的分子运动进行电子传输:通过C6接头末端接枝到表面的20聚体双链DNA链意外缓慢的旋转动力学。

Electron transport by molecular motion of redox-DNA strands: unexpectedly slow rotational dynamics of 20-mer ds-DNA chains end-grafted onto surfaces via C6 linkers.

作者信息

Anne Agnès, Demaille Christophe

机构信息

Laboratoire d'Electrochimie Moléculaire, Unité Mixte de Recherche Université - CNRS No. 7591, Université de Paris 7 - Denis Diderot, 2 place Jussieu, 75251 Paris Cedex 5, France.

出版信息

J Am Chem Soc. 2008 Jul 30;130(30):9812-23. doi: 10.1021/ja801074m. Epub 2008 Jul 2.

Abstract

The dynamics of electron transport within molecular layers of 3'-ferrocenylated 20-mer oligonucleotide, 5'-thiol end-grafted onto gold electrode surfaces via a six-carbon (C6) linker, is studied by cyclic voltammetry. Single-stranded Fc-DNA layers are observed to behave as diffusionless systems reflecting the rapid dynamics of the ssDNA strand. Following hybridization, the Fc-dsDNA-C6 layers give rise to a characteristic cyclic voltammetry behavior evidencing that the Fc head is animated by a purely diffusional motion, which is ascribed to free rotation of the rigid DNA duplex around its C6 anchoring linker. A model, describing the motion of the Fc head as resulting from hinge motion of the DNA duplex, is developed allowing the motional dynamics of the Fc-dsDNA-C6 chains to be quantified in terms of an apparent rotational diffusion coefficient, Dr. The value found for Dr is approximately 3-4 orders of magnitude slower than expected for free rotation of dsDNA in solution, pointing to a drastic motion-slowing role of the anchoring surface. Accessibility of the Fc head for the electron transfer at the electrode is also shown to modulate the apparent dsDNA dynamics. The dynamics of Fc-dsDNA-C 6 is found to be insensitive to the presence of a single mismatch in the middle of the strand, confirming that charge transport by dsDNA conduction (DNA CT) is not present for the systems studied here. However, electron transport by free hinge motion of the dsDNA chain is shown to be fast enough to, a priori, compete favorably with DNA CT.

摘要

通过循环伏安法研究了通过六碳(C6)连接子5'-硫醇端接枝到金电极表面的3'-二茂铁基化20聚体寡核苷酸分子层内的电子传输动力学。观察到单链Fc-DNA层表现为无扩散系统,反映了ssDNA链的快速动力学。杂交后,Fc-dsDNA-C6层产生了特征性的循环伏安行为,证明Fc头部通过纯扩散运动而活跃,这归因于刚性DNA双链体围绕其C6锚定连接子的自由旋转。建立了一个模型,将Fc头部的运动描述为DNA双链体的铰链运动所导致的,从而可以根据表观旋转扩散系数Dr对Fc-dsDNA-C6链的运动动力学进行量化。发现Dr的值比溶液中dsDNA自由旋转预期的值慢约3-4个数量级,这表明锚定表面具有显著的运动减缓作用。还表明Fc头部对电极上电子转移的可及性会调节表观dsDNA动力学。发现Fc-dsDNA-C6的动力学对链中间单个错配的存在不敏感,这证实了此处研究的系统不存在通过dsDNA传导(DNA CT)的电荷传输。然而,dsDNA链自由铰链运动的电子传输显示足够快,从先验角度看,能与DNA CT形成有利竞争。

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