Zhang Jinmei, Cukier Robert I, Bu Yuxiang
Institute of Theoretical Chemistry, Shandong University, Jinan, 250100, P.R. China.
J Phys Chem B. 2007 Jul 19;111(28):8335-41. doi: 10.1021/jp073592h. Epub 2007 Jun 20.
The properties and modes of recognition of physiological DNAs associated with the four natural nucleobases might be extended, in principle, by the design of non-natural nucleobase derivatives. The goal is an expansion of the genetic alphabet, with the possible outcome of producing new DNAs with improved physical or biological properties. In this work, a new series of hetero-ring-expanded guanine analogs are proposed, and their relevant structural characteristics and electronic properties are determined by density functional theory. The stabilities of the decamer DNA duplexes (dn.dC)10 (where n represents the corresponding expanded guanine analog designed here) are also examined, using molecular dynamics. The simulations show that the designed motifs can form stable DNA-like structures. We determined the pairing energies for the Watson-Crick (WC) hydrogen-bonded dimers between the expanded G-analogs and the natural C, and found that the pairing energies are close to those of the natural GC pair. The calculated adiabatic ionization potentials (IPs) of the size-expanded guanine analogs and their base pairs, and the corresponding vertical ionization potentials, show that some are distinctly smaller than the corresponding natural versions. The HOMO-LUMO energy gaps for most of the size-expanded guanine analogs and their WC base pairs are considerably lower than those of the corresponding natural base and base pairs. Thus, the expanded G bases may be considered as DNA genetic motifs, and they may serve as building blocks for potential biological applications and the development of molecular electronic devices.
原则上,通过设计非天然核碱基衍生物,与四种天然核碱基相关的生理DNA的性质和识别模式可能会得到扩展。目标是扩展遗传字母表,可能产生具有改善的物理或生物学性质的新DNA。在这项工作中,提出了一系列新的杂环扩展鸟嘌呤类似物,并通过密度泛函理论确定了它们的相关结构特征和电子性质。还使用分子动力学研究了十聚体DNA双链体(dn.dC)10(其中n代表此处设计的相应扩展鸟嘌呤类似物)的稳定性。模拟表明,设计的基序可以形成稳定的类DNA结构。我们确定了扩展G类似物与天然C之间的沃森-克里克(WC)氢键二聚体的配对能,发现配对能与天然GC对的配对能相近。计算得到的尺寸扩展鸟嘌呤类似物及其碱基对的绝热电离势(IPs)以及相应的垂直电离势表明,有些明显小于相应的天然版本。大多数尺寸扩展鸟嘌呤类似物及其WC碱基对的HOMO-LUMO能隙明显低于相应的天然碱基和碱基对。因此,扩展的G碱基可被视为DNA遗传基序,它们可作为潜在生物应用和分子电子器件开发的构建块。