首页> 外文期刊>Vibrational Spectroscopy: An International Journal devoted to Applications of Infrared and Raman Spectroscopy >An experimental and theoretical vibrational study of the interaction of cytosine and uracil with artificial seawaters: A prebiotic chemistry experiment
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An experimental and theoretical vibrational study of the interaction of cytosine and uracil with artificial seawaters: A prebiotic chemistry experiment

机译:用人工海水胞质和尿嘧啶相互作用的实验与理论振动研究:益生元化学实验

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Solids of uracil and cytosine lyophilized from different solutions were characterized using FT-IR and Raman spectroscopies and the frequencies in the spectra were compared to theoretical calculations. The effect of pH and of cations in artificial seawaters on the frequencies of FT-IR and Raman spectra were studied. The solid cytosine and uracil obtained from alkaline solutions indicated the formation of a mesomeric anion as a result of the deprotonation of Ni and N3, respectively. The spectroscopic analysis of cytosine obtained from an acid solution showed bands characteristic of cytosine hydrochloride. For uracil, no changes were observed because of its low pKa1. Cytosine interacts with the cations (Na~+, Mg~(2+), Ca~(2+) and Sr~(2+)) in the different seawaters. For these samples a shift of a band attributed to v(C2—Ni) stretching was observed. The theoretical calculations indicate an interaction of the metallic cations through C2=0, forming an "A" structure complex. For uracil, an interaction with the cations present in the artificial seawaters was also observed. The spectroscopic analysis showed new bands attributed to the C4=0 group which indicates that the interaction occurs at a carbonyl resulting in a "B" structure complex. The reactivity of cytosine and uracil were studied using 2 parameters the nucleophilicity and energy of the molecular orbital HOMO. The Mulliken charges at N1 for the two tautomers of both cytosine and uracil were compared. It was concluded that the enol-imino form has lower energy and, consequently, higher nucleophilicity. Thus, these complexes could have played an important role on nucleoside formation. The HOMO has a contribution to N1 in the enol-imino and keto-amino tautomers for both nucleic acid bases.
机译:使用FT-IR和拉曼光谱表征从不同溶液中冻干的尿嘧啶和胞嘧啶的固体,并将光谱中的频率与理论计算进行比较。研究了pH和阳离子在人造海水上对FT-IR和拉曼光谱频率的影响。由碱性溶液获得的固体胞嘧啶和尿嘧啶分别表明,由于Ni和N 3的去质子化,因此形成了一种脱脂阴离子。从酸溶液中获得的胞嘧啶的光谱分析显示盐酸胞嘧啶的带状。对于尿嘧啶,由于其低PKA1,没有观察到变化。胞嘧啶在不同海水中与阳离子(Na〜+,Mg〜(2+),Ca〜(2+)和Sr〜(2+)相互作用。对于这些样品,观察到归因于V(C2-Ni)拉伸的频带的偏移。理论计算表明金属阳离子通过C2 = 0的相互作用,形成“A”结构复合物。对于尿嘧啶,还观察到与人工海洋水域中存在的阳离子的相互作用。光谱分析显示出归因于C4 = 0组的新条带,其表明在羰基中发生相互作用,得到“B”结构复合物。使用2个参数研究了分子轨道均匀的亲核和能量的胞嘧啶和尿嘧啶的反应性。比较了两种胞胎和尿嘧啶的两个互变异构体的Mulliken电荷。得出结论是,烯醇酰亚胺形式的能量较低,因此较高的亲核性。因此,这些配合物可能在核苷地层中发挥着重要作用。 HOMO在烯醇酰亚胺和酮氨基互变异构体中对N1的N1贡献。

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