Hernández B, Orozco M, Luque F J
Department of Biochemistry and Molecular Biology, Faculty of Chemistry, University of Barcelona, Spain.
J Comput Aided Mol Des. 1996 Dec;10(6):535-44. doi: 10.1007/BF00134177.
Tautomerism of neutral xanthine and alloxanthine has been examined both in the gas phase and in aqueous solution. The tautomeric preference in the gas phase has been studied by means of semiempirical and ab initio quantum-mechanical computations with inclusion of correlation effects at the Møller-Plesset level, and from density-functional calculations. The influence of solvent on the relative stability between tautomers has been estimated from self-consistent reaction field calculations performed with different models. The results provide a detailed picture of tautomerism for these biologically relevant purine bases. The functional implications in the recognition by xanthine oxidase are analyzed from inspection of the interaction patterns of the most stable tautomeric forms. A model for the recognition of these purine derivatives in the enzyme binding site is discussed.
已在气相和水溶液中研究了中性黄嘌呤和别嘌呤醇的互变异构现象。通过在Møller-Plesset水平包含相关效应的半经验和从头算量子力学计算以及密度泛函计算,研究了气相中的互变异构偏好。利用不同模型进行的自洽反应场计算估计了溶剂对互变异构体之间相对稳定性的影响。结果提供了这些具有生物学相关性的嘌呤碱互变异构现象的详细情况。通过检查最稳定互变异构形式的相互作用模式,分析了黄嘌呤氧化酶识别中的功能含义。讨论了酶结合位点中这些嘌呤衍生物识别的模型。