Université Lyon1, UMR 5180 Sciences Analytiques, Villeurbanne, France.
Phys Chem Chem Phys. 2012 Jan 14;14(2):945-54. doi: 10.1039/c1cp22454a. Epub 2011 Nov 28.
In the present study, DFT periodic plane wave calculations, at the PBE-D level of theory, were carried out to investigate the interaction of DNA nucleobases with acidic montmorillonite. The surface model was considered in its octahedral (Osub) and tetrahedral (Tsub) substituted forms, known to have different acidic properties. The adsorption of adenine, guanine and cytosine was considered in both orthogonal and coplanar orientations with the surface, interacting with the proton via a given heteroatom. In almost all considered cases, adsorption involved the spontaneous proton transfer to the nucleobase, with a more pronounced character in the Osub structures. The binding energy is about 10 kcal mol(-1) larger for Osub than for Tsub complexes mainly due to the larger acidity in Osub surfaces and due to the better stabilization by H-bond contacts between the negatively charged surface and the protonated base. The binding energy of coplanar orientations of the base is observed to be as large as the orthogonal ones due to a balance between electrostatic and dispersion contributions. Finally the binding of guanine and adenine on the acidic surface amounts to 50 kcal mol(-1) while that of cytosine rises to 44 kcal mol(-1).
在本研究中,采用 PBE-D 理论水平的 DFT 平面波计算,研究了 DNA 碱基与酸性蒙脱石的相互作用。表面模型被考虑为八面体 (Osub) 和四面体 (Tsub) 取代形式,已知具有不同的酸性性质。腺嘌呤、鸟嘌呤和胞嘧啶在与表面正交和共面的方向上被考虑,通过给定的杂原子与质子相互作用。在几乎所有考虑的情况下,吸附涉及质子向碱基的自发转移,在 Osub 结构中更为明显。Osub 复合物的结合能比 Tsub 复合物大约 10 kcal mol(-1),主要是由于 Osub 表面的酸度更大,以及带负电荷的表面和质子化碱基之间的氢键接触更好地稳定了复合物。由于静电和色散贡献之间的平衡,共面碱基的结合能与正交碱基的结合能一样大。最后,鸟嘌呤和腺嘌呤在酸性表面上的结合能达到 50 kcal mol(-1),而胞嘧啶的结合能上升到 44 kcal mol(-1)。