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汞-TpT 二核苷酸结合的拉曼光谱检测:计算研究。

Detection of mercury-TpT dinucleotide binding by Raman spectra: a computational study.

机构信息

Institute of Organic Chemistry and Biochemistry, Academy of Sciences, Praha 6, Czech Republic.

出版信息

J Phys Chem A. 2012 Aug 16;116(32):8313-20. doi: 10.1021/jp3045077. Epub 2012 Aug 2.

Abstract

The Hg(2+) ion stabilizes the thymine-thymine mismatched base pair and provides new ways of creating various DNA structures. Recently, such T-Hg-T binding was detected by the Raman spectroscopy. In this work, detailed differences in vibrational frequencies and Raman intensity patterns in the free TpT dinucleotide and its metal-mediated complex (TpT·Hg)(2) are interpreted on the basis of quantum chemical modeling. The computations verified specific marker Raman bands indicating the effect of mercury binding to DNA. Although the B3LYP functional well-describes the Raman frequencies, a dispersion correction had to be added for all atoms including mercury to obtain realistic geometry of the (TpT·Hg)(2) dimer. Only then, the DFT complex structure agreed with those obtained with the wave function-based MP2 method. The aqueous solvent modeled as a polarizable continuum had a minor effect on the dispersion interaction, but it stabilized conformations of the sugar and phosphate parts. A generalized definition of internal coordinate force field was introduced to monitor covalent bond mechanical strengthening and weakening upon the Hg(2+) binding. Induced vibrational frequency shifts were rationalized in terms of changes in electronic structure. The simulations thus also provided reliable insight into the complex structure and stability.

摘要

汞(II)离子稳定胸腺嘧啶-胸腺嘧啶错配碱基对,并为创建各种 DNA 结构提供了新途径。最近,拉曼光谱检测到了这种 T-Hg-T 结合。在这项工作中,基于量子化学建模,解释了游离 TpT 二核苷酸及其金属介导复合物(TpT·Hg)(2)中振动频率和拉曼强度模式的详细差异。计算验证了特定的拉曼带标记,表明汞与 DNA 结合的效果。尽管 B3LYP 功能很好地描述了拉曼频率,但必须对包括汞在内的所有原子添加色散校正,才能获得(TpT·Hg)(2)二聚体的实际几何形状。只有这样,DFT 配合物结构才与基于波函数的 MP2 方法获得的结构一致。将水溶液模拟为极化连续体对色散相互作用的影响较小,但它稳定了糖和磷酸盐部分的构象。引入了内部坐标力场的广义定义,以监测 Hg(2+)结合时共价键的机械强化和弱化。诱导的振动频率位移根据电子结构的变化进行了合理化。因此,这些模拟还为复合物的结构和稳定性提供了可靠的见解。

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