Noguera Marc, Bertran Juan, Sodupe Mariona
Departament de Química, Universitat Autónoma de Barcelona, Bellaterra 08193, Spain.
J Phys Chem B. 2008 Apr 17;112(15):4817-25. doi: 10.1021/jp711982g. Epub 2008 Mar 22.
Intermolecular proton-transfer processes in the Watson & Crick adenine-thymine Cu+ and Cu2+ cationized base pairs have been studied using the density functional theory (DFT) methods. Cationized systems subject to study are those resulting from cation coordination to the main basic sites of the base pair, N7 and N3 of adenine and O2 of thymine. For Cu+ coordinated to N7 or N3 of adenine, only the double proton-transferred product is found to be stable, similarly to the neutral system. However, when Cu+ interacts with thymine, through the O2 carbonyl atom, the single proton transfer from thymine to adenine becomes thermodynamically spontaneous, and thus rare forms of the DNA bases may spontaneously appear. For Cu2+ cation, important effects on proton-transfer processes appear due to oxidation of the base pair, which stabilizes the different single proton-transfer products. Results for hydrated systems show that the presence of the water molecules interacting with the metal cation (and their mode of coordination) can strongly influence the ability of Cu2+ to induce oxidation on the base pair.
利用密度泛函理论(DFT)方法研究了沃森-克里克腺嘌呤-胸腺嘧啶Cu⁺和Cu²⁺阳离子化碱基对中的分子间质子转移过程。所研究的阳离子化体系是阳离子与碱基对的主要碱性位点(腺嘌呤的N7和N3以及胸腺嘧啶的O2)配位后形成的体系。对于与腺嘌呤的N7或N3配位的Cu⁺,与中性体系类似,仅发现双质子转移产物是稳定的。然而,当Cu⁺通过O2羰基原子与胸腺嘧啶相互作用时,从胸腺嘧啶到腺嘌呤的单质子转移在热力学上变得自发,因此DNA碱基的罕见形式可能会自发出现。对于Cu²⁺阳离子,由于碱基对的氧化,对质子转移过程产生了重要影响,这使得不同的单质子转移产物得以稳定。水合体系的结果表明,与金属阳离子相互作用的水分子的存在(及其配位模式)会强烈影响Cu²⁺诱导碱基对氧化的能力。