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Structure and Reactivity of Selected Pyrimidine and Purine Bases in the External Electric Field

机译:外电场中选定嘧啶和嘌呤碱的结构和反应性

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Background: The study of the effect of External Electric Field (EEF) on thestructure of several biologically important compounds is now extended to pyrimidine andpurine bases.Objectives: The present study involves computations of changes in energy and dipolemoments, the charge density of pyrimidine bases (cytosine, thymine and uracil) and purinebases (adenosine and guanine) in the external electric field of 0.00, 5.14, 25.70 and 51.40MV/cm.Method: The computations were performed applying HyperChem 8.0 software togetherwith the PM3 method for optimization of the conformation of the molecules.Results: The rise in the EEF strength to 5.14 MV/cm has a subtle effect on the molecularenergy of the bases under consideration. A slight tendency in decreasing that energy can,however, be observed. On elevating the strength up to 25.70 MV/cm the decrease inmolecular energy was more significant. EEF has a tremendous effect on the reorientationof the molecules in the Cartesian system. It influences tautomeric equilibria.Conclusion: Observed changes evoked by the EEF were specific for particular molecules.They resulted mainly from the polarization of the bonds and from steric deformations ofthe molecules.
机译:背景:外部电场(EEF)对几种生物学上重要的化合物缩小的影响的研究现在延伸到嘧啶andburine碱基。目前的研究涉及能量和偶极物的变化计算,嘧啶碱的电荷密度(胞嘧啶,胸腺嘧啶和尿嘧啶)和嘌呤酶(腺苷和鸟嘌呤)在外部电场0.00,5.14,25.70和51.40mV / cm.method中:计算使用高速8.0软件的计算,以便优化的PM3方法分子。结果:EEF强度的上升至5.14 mV / cm对所考虑的基地的分子化有一种微妙的影响。然而,可以观察到可以减少能量的轻微趋势。在提高高达25.70 mV / cm的强度,降低分散能量更为显着。 EEF对笛卡尔系统中分子的重新定位有巨大影响。它会影响互变异的均衡。结论:EEF引起的观察变化是特定分子的特异性。它们主要来自键的极化和分子的空间变形。

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