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局部密度涨落预测偶氮苯修饰DNA的光异构化量子产率。

Local Density Fluctuations Predict Photoisomerization Quantum Yield of Azobenzene-Modified DNA.

作者信息

Kingsland Addie, Samai Soumyadyuti, Yan Yunqi, Ginger David S, Maibaum Lutz

机构信息

Department of Chemistry, University of Washington , Seattle, Washington 98195, United States.

出版信息

J Phys Chem Lett. 2016 Aug 4;7(15):3027-31. doi: 10.1021/acs.jpclett.6b00956. Epub 2016 Jul 26.

Abstract

Azobenzene incorporated into DNA has a photoisomerization quantum yield that depends on the DNA sequence near the azobenzene attachment site. We use Molecular Dynamics computer simulations to elucidate which physical properties of the modified DNA determine the quantum yield. We show for a wide range of DNA sequences that the photoisomerization quantum yield is strongly correlated with the variance of the number of atoms in close proximity to the outer phenyl ring of the azobenzene group. We infer that quantum yield is controlled by the availability of fluctuations that enable the conformational change. We demonstrate that these simulations can be used as a qualitative predictive tool by calculating the quantum yield for several novel DNA sequences, and confirming these predictions using UV-vis spectroscopy. Our results will be useful for the development of a wide range of applications of photoresponsive DNA nanotechnology.

摘要

掺入DNA中的偶氮苯具有光异构化量子产率,该产率取决于偶氮苯连接位点附近的DNA序列。我们使用分子动力学计算机模拟来阐明修饰DNA的哪些物理性质决定了量子产率。对于广泛的DNA序列,我们表明光异构化量子产率与紧邻偶氮苯基团外苯环的原子数的方差密切相关。我们推断量子产率受能够实现构象变化的涨落可用性的控制。我们通过计算几种新型DNA序列的量子产率,并使用紫外可见光谱法证实这些预测,证明这些模拟可以用作定性预测工具。我们的结果将有助于光响应性DNA纳米技术的广泛应用开发。

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