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π-堆积、氢键和静电相互作用对碱基(腺嘌呤-腺嘌呤、胸腺嘧啶-胸腺嘧啶和腺嘌呤-胸腺嘧啶二聚体)的电离能的影响。

The effect of pi-stacking, H-bonding, and electrostatic interactions on the ionization energies of nucleic acid bases: adenine-adenine, thymine-thymine and adenine-thymine dimers.

机构信息

Department of Chemistry, University of Southern California, Los Angeles, CA 90089-0482, USA.

出版信息

Phys Chem Chem Phys. 2010 Mar 14;12(10):2292-307. doi: 10.1039/b919930f. Epub 2010 Jan 6.

Abstract

A combined theoretical and experimental study of the ionized dimers of thymine and adenine, TT, AA, and AT, is presented. Experimentally observed and computed adiabatic and vertical ionization energies (IEs) for monomers and dimers as well as thresholds for the appearance of the protonated species are reported and analyzed. Non-covalent interactions strongly affect the observed IEs. The magnitude and the nature of the effect is different for different isomers of the dimers. The computations reveal that for TT, the largest changes in vertical IEs (0.4 eV) relative to the monomer occur in asymmetric H-bonded and symmetric pi-stacked isomers, whereas in the lowest-energy symmetric H-bonded dimer the shift in IEs is much smaller (0.2 eV). The origin of the shift and the character of the ionized states is different in asymmetric H-bonded and symmetric stacked isomers. In the former, the initial hole is localized on one of the fragments, and the shift is due to the electrostatic stabilization of the positive charge of the ionized fragment by the dipole moment of the neutral fragment. In the latter, the hole is delocalized, and the change in IE is proportional to the overlap of the fragments' MOs. Relative to TT, the shifts in AA and AT are much smaller due to a less efficient overlap, smaller dipole of A and the large energy gap between ionized states of A and T monomers in the case of AT dimer. The ionization of the H-bonded dimers results in barrierless (or nearly barrierless) proton transfer, whereas the pi-stacked dimers relax to structures with the hole stabilized by the delocalization or electrostatic interactions.

摘要

本文对胸腺嘧啶和腺嘌呤的离子二聚体 TT、AA 和 AT 进行了理论和实验研究。报告并分析了实验观测和计算得到的单体和二聚体的绝热和垂直电离能(IE)以及质子化物种出现的阈值。非共价相互作用强烈影响观察到的 IE。对于二聚体的不同异构体,这种影响的大小和性质是不同的。计算结果表明,对于 TT,相对于单体,垂直 IE 的最大变化(0.4 eV)发生在不对称氢键和对称 π 堆积异构体中,而在最低能量的对称氢键二聚体中,IE 的位移要小得多(0.2 eV)。不对称氢键和对称堆积异构体中,IE 位移的起源和离子化态的性质是不同的。在前者中,初始空穴定域在一个碎片上,而位移是由于中性碎片的偶极矩对离子化碎片的正电荷的静电稳定化。在后者中,空穴离域,IE 的变化与碎片 MO 的重叠成正比。相对于 TT,AA 和 AT 的位移要小得多,这是由于重叠效率较低、A 的偶极矩较小以及 AT 二聚体中 A 和 T 单体的离子化态之间的能量间隙较大所致。氢键二聚体的电离导致无势垒(或几乎无势垒)的质子转移,而 π 堆积二聚体则弛豫到由离域或静电相互作用稳定空穴的结构。

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