Schreiber Marko, González Leticia
Institut für Chemie and Biochemie, Freie Universität Berlin, Takustrasse 3, 14195 Berlin, Germany.
J Comput Chem. 2007 Nov 15;28(14):2299-308. doi: 10.1002/jcc.20743.
High level ab initio calculations have been carried out to characterize the structure, bonding and energetics of Ag(I)-DNA base complexes, including adenine or cytosine, as well as Ag(I)-adenine-cytosine mispairs. The interactions of the Ag cation in all binding sites of all adenine and cytosine tautomers have been considered. The calculations show that in gas phase the canonical form of cytosine is stabilized upon metalation, whereas the lowest energy structure of Ag-adenine correspond to a rare tautomer. Interestingly, the theoretical inspection of metalated adenine-cytosine mispair reveals that the most stable structures are formed from the canonical cytosine and adenine tautomers. The lowest energy structure is planar with adenine and cytosine hydrogen-bonded. Within few kcal/mol nonplanar, conformationally very flexible structures are found, in which the Ag(I) crosslinks an endocyclic nitrogen of adenine and the oxygen of cytosine. Metalated reverse-Wobble type of structures, on the contrary, are predicted much higher in energy.
已进行了高水平的从头算计算,以表征Ag(I)-DNA碱基复合物(包括腺嘌呤或胞嘧啶)以及Ag(I)-腺嘌呤-胞嘧啶错配的结构、键合和能量学。考虑了Ag阳离子在所有腺嘌呤和胞嘧啶互变异构体的所有结合位点中的相互作用。计算表明,在气相中,胞嘧啶的标准形式在金属化后得到稳定,而Ag-腺嘌呤的最低能量结构对应于一种罕见的互变异构体。有趣的是,对金属化腺嘌呤-胞嘧啶错配的理论研究表明,最稳定的结构是由标准胞嘧啶和腺嘌呤互变异构体形成的。最低能量结构是平面的,腺嘌呤和胞嘧啶通过氢键相连。在几kcal/mol范围内,发现了非平面、构象非常灵活的结构,其中Ag(I)交联腺嘌呤的一个内环氮和胞嘧啶的氧。相反,预测金属化的反向摆动型结构能量要高得多。