Voityuk Alexander A
Institució Catalana de Recerca i Estudis Avançats, Institute of Computational Chemistry, Universitat de Girona, 17071 Girona, Spain.
J Phys Chem B. 2006 Oct 26;110(42):21010-3. doi: 10.1021/jp062776d.
Very recently it has been shown that stable metal-mediated base pairs [Thymine-Hg-Thymine] can form in DNA. To estimate the effect of such pairs on the efficiency of charge transfer through DNA, we carry out quantum mechanical calculations of double-stranded pi-stacks GXG, GXXG, and GXXXG, where X = [Thymine-Hg-Thymine] and stacks GT(n)G of canonical base pairs. The charge-transfer efficiency in short duplexes GXG and GTG is found to be similar. However, the donor-acceptor coupling in GXXG and GXXXG is stronger by a factor of 2.5-3.0 than that in GT(n)G (n = 2 and 3), respectively. It is shown that the valence orbitals of Hg atoms do not essentially participate in mediating the electronic coupling for hole transfer; however, they may play an important role in excess electron transfer.
最近有研究表明,DNA中可以形成稳定的金属介导碱基对[胸腺嘧啶-汞-胸腺嘧啶]。为了评估此类碱基对对DNA电荷转移效率的影响,我们对双链π-堆积GXG、GXXG和GXXXG进行了量子力学计算,其中X = [胸腺嘧啶-汞-胸腺嘧啶],以及对标准碱基对的堆积GT(n)G进行了计算。发现短双链体GXG和GTG中的电荷转移效率相似。然而,GXXG和GXXXG中的供体-受体耦合分别比GT(n)G(n = 2和3)中的强2.5至3.0倍。结果表明,汞原子的价轨道基本上不参与介导空穴转移的电子耦合;然而,它们可能在过量电子转移中起重要作用。