Han Li, Li Huifang, Cukier Robert I, Bu Yuxiang
The Center for Modeling and Simulation Chemistry, Institute of Theoretical Chemistry, Shandong University, Jinan, P.R. China.
J Phys Chem B. 2009 Apr 2;113(13):4407-12. doi: 10.1021/jp8088726.
The design of new DNA motifs is at present a very interesting topic. Recent progress indicates that the hetero-ring-expanded guanine (G) analogues possess enhanced properties compared with natural guanine. In this work, a series of hetero-ring-expanded adenine (A) analogues are designed, and their structures and electronic properties are investigated by means of density functional calculations and molecular dynamics simulations. The results indicate that the designed A-analogues can form stable base pairs with natural counterpart, and the pairing energetics for the Watson-Crick hydrogen-bonded dimers between the expanded A-analogues and natural T exhibit similarity to natural AT. Their tautomeric preferences are close to natural A, too. Furthermore, compared with natural ones, most size-expanded adenines and corresponding base pairs have smaller ionization potentials. In particular, several designed A analogues have ionization potentials even lower than natural G. The electron affinities of these modified A are comparable with that of natural A. The HOMO-LUMO gaps also behave with sensible trends. Most of A-analogues and their interrelated base pairs possess smaller gaps than the corresponding natural base and base pairs. Further, molecular dynamics simulations show the sufficient stabilities of the DNA analogues (dnA.dT)(12) (where nA represents the size-expanded A-analogues designed here) when forming duplexes as the natural one does. Clearly, these observations imply their promising applications as molecular wires and new DNA motifs.
新型DNA基序的设计目前是一个非常有趣的课题。最近的进展表明,与天然鸟嘌呤相比,杂环扩展的鸟嘌呤(G)类似物具有增强的性质。在这项工作中,设计了一系列杂环扩展的腺嘌呤(A)类似物,并通过密度泛函计算和分子动力学模拟研究了它们的结构和电子性质。结果表明,所设计的A类似物可以与天然对应物形成稳定的碱基对,并且扩展的A类似物与天然胸腺嘧啶(T)之间的沃森-克里克氢键二聚体的配对能量与天然腺嘌呤-胸腺嘧啶(AT)相似。它们的互变异构偏好也与天然A相近。此外,与天然的相比,大多数尺寸扩展的腺嘌呤及其相应的碱基对具有较小的电离势。特别是,几种设计的A类似物的电离势甚至低于天然G。这些修饰的A的电子亲和势与天然A相当。最高占据分子轨道-最低未占据分子轨道(HOMO-LUMO)能隙也呈现出合理的趋势。大多数A类似物及其相关的碱基对比相应的天然碱基和碱基对具有更小的能隙。此外,分子动力学模拟表明,DNA类似物(dnA.dT)(12)(其中nA代表此处设计的尺寸扩展的A类似物)在形成双链体时具有与天然双链体相当的稳定性。显然,这些观察结果暗示了它们作为分子导线和新型DNA基序的潜在应用前景。