Kratochvílová Irena, Golan Martin, Vala Martin, Špérová Miroslava, Weiter Martin, Páv Ondřej, Šebera Jakub, Rosenberg Ivan, Sychrovský Vladimír, Tanaka Yoshiyuki, Bickelhaupt F Matthias
Institute of Physics, Academy of Sciences of the Czech Republic , v.v.i, Na Slovance 2, CZ-182 21 Prague 8, Czech Republic.
J Phys Chem B. 2014 May 22;118(20):5374-81. doi: 10.1021/jp501986a. Epub 2014 May 7.
DNA-Hg complexes may play an important role in sensing DNA defects or in detecting the presence of Hg in the environment. A fundamental way of characterizing DNA-Hg complexes is to study the way the electric charge is transferred through the molecular chain. The main goal of this contribution was to investigate the impact of a mercury metal cation that links two thymine bases in a DNA T-T mismatched base pair (T-Hg-T) on charge transfer through the DNA molecule. We compared the charge transfer efficiencies in standard DNA, DNA with mismatched T-T base pairs, and DNA with a T-Hg(II)-T base pair. For this purpose, we measured the temperature dependence of steady-state fluorescence and UV-vis of the DNA molecules. The experimental results were confronted with the results obtained employing theoretical DFT methods. Generally, the efficiency of charge transfer was driven by mercury changing the spatial overlap of bases.
DNA-汞复合物可能在感知DNA缺陷或检测环境中汞的存在方面发挥重要作用。表征DNA-汞复合物的一种基本方法是研究电荷通过分子链转移的方式。本研究的主要目的是研究汞金属阳离子连接DNA中T-T错配碱基对(T-Hg-T)中两个胸腺嘧啶碱基对通过DNA分子的电荷转移的影响。我们比较了标准DNA、具有错配T-T碱基对的DNA和具有T-Hg(II)-T碱基对的DNA中的电荷转移效率。为此,我们测量了DNA分子稳态荧光和紫外可见光谱的温度依赖性。实验结果与采用理论密度泛函理论(DFT)方法获得的结果进行了对比。一般来说,电荷转移效率是由汞改变碱基的空间重叠所驱动的。