Université de Lorraine-Nancy, Théorie-Modélisation-Simulation, SRSMC, Boulevard des Aiguillettes, BP 70239, 54506, Vandoeuvre-lès-Nancy.
J Phys Chem B. 2013 May 2;117(17):4973-80. doi: 10.1021/jp4017882. Epub 2013 Apr 15.
We present a time-dependent density functional theory computation of the absorption spectra of one β-carboline system: the harmane molecule in its neutral and cationic forms. The spectra are computed in aqueous solution. The interaction of cationic harmane with DNA is also studied. In particular, the use of hybrid quantum mechanics/molecular mechanics methods is discussed, together with its coupling to a molecular dynamics strategy to take into account dynamic effects of the environment and the vibrational degrees of freedom of the chromophore. Different levels of treatment of the environment are addressed starting from purely mechanical embedding to electrostatic and polarizable embedding. We show that a static description of the spectrum based on equilibrium geometry only is unable to give a correct agreement with experimental results, and dynamic effects need to be taken into account. The presence of two stable noncovalent interaction modes between harmane and DNA is also presented, as well as the associated absorption spectrum of harmane cation.
我们提出了一种含时密度泛函理论计算,用于研究β-咔啉体系中一个分子:中性和阳离子形式的哈尔满。这些光谱是在水溶液中计算的。还研究了阳离子哈尔满与 DNA 的相互作用。特别是,讨论了混合量子力学/分子力学方法的使用,以及将其与分子动力学策略相结合,以考虑环境的动态效应和发色团的振动自由度。从纯机械嵌入到静电和极化嵌入,我们研究了不同水平的环境处理。我们表明,仅基于平衡几何的静态光谱描述无法与实验结果正确吻合,因此需要考虑动态效应。还提出了哈尔满与 DNA 之间存在两种稳定的非共价相互作用模式,以及相关的哈尔满阳离子吸收光谱。