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Tautomerism of 6-thioguanine in the gas and aqueous phases using AM1 and PM3 methods

机译:使用AM1和PM3方法的气相和水相中的6-硫鸟嘌呤互变异构

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摘要

Heats of formation, entropies, Gibbs free energies,relative tautomerisation energies,tautomeric equilibrium constnats, relative proton affinities, dipole moments and ionisation potentials for the fourteen possible tautomers of 6-thioguanine have been studied using semiempirical AM1 and PM3 quantum-chemical calculations at the SCF level, both in the gas and aqueous phase, with full geometry optimisation. The COSMO solvation model was employed for aqueous solution calculations. THe calculations show that 6-thioguanine exists as the thiol-amino forms in the gas phase, whereas the thione-amino forms are the predominant tautomers in the aqueous solutoin. THe N9(H) thiol is the most stable tautomer in the gas phase, while the thione-N1,7(H) tautomer is preferred in an aqueous solution. HTe results are in good agreement with available experimental and theoretical results. The entropy effect on the Gibbs free energy of the 6-thioguanine base is very smal and there is little significance for the tautomeric equilibria of hte base. THe enthalpic term is dominant also in the determination of the equilibrium constant.
机译:使用半经验AM1和PM3量子化学计算方法研究了14-硫鸟嘌呤的十四种可能的互变异构体的形成热,熵,吉布斯自由能,相对互变异构能,互变异构平衡构象,相对质子亲和力,偶极矩和电离势。气相和水相中的SCF含量均经过几何优化。 COSMO溶剂化模型用于水溶液计算。计算结果表明6-硫鸟嘌呤在气相中以硫醇-氨基形式存在,而硫酮-氨基形式是水性溶胶中主要的互变异构体。在气相中,N9(H)硫醇是最稳定的互变异构体,而在水溶液中优选硫酮-N1,7(H)互变异构体。 HTe结果与可用的实验和理论结果高度吻合。熵对6-硫代鸟嘌呤碱基的吉布斯自由能的影响非常小,对碱基的互变异构平衡意义不大。焓项在平衡常数的确定中也占主导地位。

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