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氧化损伤对 DNA 中电荷和自旋输运的影响。

Effect of Oxidative Damage on Charge and Spin Transport in DNA.

机构信息

Department of Chemical and Biological Physics , Weizmann Institute of Science , Rehovot 76100 , Israel.

Dip. di Ingegneria , DIEF, MO26 , Via P. Vivarelli 10 , 41125 Modena , Italy.

出版信息

J Am Chem Soc. 2019 Jan 9;141(1):123-126. doi: 10.1021/jacs.8b12014. Epub 2018 Dec 17.

Abstract

A Hall device was used for measuring spin polarization on electrons that are either reorganized within the molecules or transmitted through the self-assembled monolayers of DNA adsorbed on the device surface. We were able to observe spin-dependent charge polarization and charge transport through double-stranded DNA of various lengths and through double-stranded DNA containing oxidative damage. We found enhancement in the spin-dependent transport through oxidatively damaged DNA. This phenomenon can be rationalized either by assuming that the damaged DNA is characterized by a higher barrier for conduction or by charge transfer through the DNA being conducted through at least two channels, one involves the bases and is highly conductive but less spin selective, while the other pathway is mainly through the ribophosphate backbone and it is the minor one in terms of charge transmission efficiency, but it is highly spin selective.

摘要

使用 Hall 器件测量在分子内重新排列或通过吸附在器件表面的 DNA 自组装单层传输的电子的自旋极化。我们能够观察到通过不同长度的双链 DNA 以及含有氧化损伤的双链 DNA 的自旋相关电荷极化和电荷输运。我们发现氧化损伤 DNA 的自旋相关输运增强。这种现象可以通过假设受损 DNA 的传导势垒较高或者通过电荷通过至少两个通道转移来合理化,一个通道涉及碱基,并且是高导电性但自旋选择性较低,而另一个通道主要通过核糖磷酸骨架,其在电荷传输效率方面是较小的,但它是高度自旋选择性的。

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