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顺铂与嘌呤碱结合中的氢键和共价效应:从头算和分子中的原子研究

Hydrogen bonding and covalent effects in binding of cisplatin to purine bases: ab initio and atoms in molecules studies.

作者信息

Robertazzi Arturo, Platts James A

机构信息

Department of Chemistry, Cardiff University, P.O. Box 912, Cardiff CF10 3TB, UK.

出版信息

Inorg Chem. 2005 Jan 24;44(2):267-74. doi: 10.1021/ic0489544.

Abstract

Ab initio and density functional calculations are employed to investigate the role of hydrogen bonding in the binding of cisplatin to the purine bases guanine and adenine. Through the use of the theory of atoms in molecules (AIM), it is shown that hydrogen bonds are ubiquitous in such systems, with N-H...N and N-H...Cl interactions present in addition to the expected N-H...O. This in turn means that the known stability of cisplatin-guanine complexes cannot be ascribed solely to hydrogen bonding and allows decomposition of total binding energy into contributions from covalent and hydrogen bonds. To do so, a new method for predicting hydrogen bond energies from bond critical point properties is proposed, employing partial least-squares analysis to remove the family dependence of simple models. Still more hydrogen bond motifs are found in bifunctional complexes of the general type purine-Pt(NH(3))(2)-purine, including purine...purine contacts, though again the energetics of these are insufficient to explain the observed trends in stability. Finally, the effect of platination on the pairing of guanine with cytosine is studied in a similar manner, revealing large redistributions of hydrogen bonding but surprisingly small overall changes in pairing energy.

摘要

采用从头算和密度泛函计算方法来研究氢键在顺铂与嘌呤碱基鸟嘌呤和腺嘌呤结合中的作用。通过运用分子中的原子理论(AIM)表明,此类体系中氢键无处不在,除了预期的N-H…O相互作用外,还存在N-H…N和N-H…Cl相互作用。这进而意味着顺铂-鸟嘌呤配合物的已知稳定性不能仅归因于氢键,并且可以将总结合能分解为共价键和氢键的贡献。为此,提出了一种从键临界点性质预测氢键能的新方法,采用偏最小二乘法分析以消除简单模型中的族依赖性。在嘌呤-Pt(NH(3))(2)-嘌呤这种一般类型的双功能配合物中还发现了更多的氢键模式,包括嘌呤…嘌呤接触,不过这些相互作用的能量学仍不足以解释所观察到的稳定性趋势。最后,以类似方式研究了铂化对鸟嘌呤与胞嘧啶配对的影响,揭示了氢键的大量重新分布,但配对能的总体变化出人意料地小。

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