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首页> 外文期刊>The journal of physical chemistry, B. Condensed matter, materials, surfaces, interfaces & biophysical >How Many Conformers Determine the Thymidine Low-Temperature Matrix Infrared Spectrum? DFT and MP2 Quantum Chemical Study
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How Many Conformers Determine the Thymidine Low-Temperature Matrix Infrared Spectrum? DFT and MP2 Quantum Chemical Study

机译:有多少合格者确定胸腺嘧啶核苷低温基质的红外光谱? DFT和MP2量子化学研究

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A comprehensive conformational analysis of isolated 2'--deoxy-thymidine (T), canonical DNA nucleoside, has been performed by means of ab initio calculations at the MP2/6-311++G(d,p)//DFT B3LYP/6-31G(d,p) level of theory. At 298.15 K, all 92 conformers of isolated dT are within a 7.49 kcal/mol Gibbs energy range. Syn orientation for the base and South (S) conformers for the sugar dominate at this temperature: syn/anti = 61.6%:38.4% and S/N = 74.5%:25.5%. However, at 420 K, the majority of conformers contain anti base and the population of North (N) sugars increases: syn/anti = 38.0%:62.0% and S/N = 59.5%:40.5%. The whole conformational parameters (P, χ, γ, δ, β, ∈, vmax) were analyzed as well as the energies of the OH···O intramolecular H-bonds on the basis of v(OH) stretching vibrations. Convolution of calculated IR spectra of all of the T conformers appears consistent with its low-temperature matrix spectrum (Ivanov et al. Low Temp. Phys. 2003, 29, 809). The maximal discrepancy in frequencies between calculated and experimental spectra is less than 1%. A conclusion was made that for reliable reconstruction of the isolated nucleoside IR spectrum the quasi whole set of conformers should be taken into consideration. In essence, this result opens up a possibility to reconstruct IR spectra of isolated nucleosides at physiological temperatures with rather satisfactory probability.
机译:已通过从头算的方法在MP2 / 6-311 ++ G(d,p)// DFTB3LYP / 6-31G(d,p)的理论水平。在298.15 K时,所有dT构象的92个构象异构体均在7.49 kcal / mol Gibbs能量范围内。在此温度下,糖的碱基和南(S)构象异构体的顺式方向占主导地位:顺式/反式= 61.6%:38.4%,S / N = 74.5%:25.5%。但是,在420 K时,大多数构象异构体都含有反碱基,并且North(N)糖的数量增加:syn / anti = 38.0%:62.0%,S / N = 59.5%:40.5%。分析了整个构象参数(P,χ,γ,δ,β,ε,vmax)以及基于v(OH)拉伸振动的OH··O分子内H键的能量。计算出的所有T构象异构体的IR光谱的卷积似乎与其低温基质光谱一致(Ivanov等人,Low Temp。Phys.2003,29,809)。计算频谱与实验频谱之间的最大频率差异小于1%。得出的结论是,为可靠地重建分离的核苷红外光谱,应考虑准整体构象体。本质上,该结果为在生理温度下以相当令人满意的概率重建分离的核苷的红外光谱开辟了可能性。

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