Center for Precision Engineering, Harbin Institute of Technology, P.O. Box 413, Harbin 150001, China.
J Phys Chem B. 2010 Apr 8;114(13):4692-701. doi: 10.1021/jp9109223.
Adsorption behavior and dynamics of Arg-Gly-Asp (RGD) tripeptides with different orientations onto the rutile TiO(2) (110) surface in water solution were systematically investigated by molecular dynamics (MD) simulations, using two different water models, TIP3P (transferable intermolecular potential 3P) and SPC/E (extended simple point charge). Possible RGD-TiO(2) binding modes in the form of hydrogen-bonding interactions, involving the amide groups (NH(3)(+) or NH(2)(+), NH(2)) and surface oxygen atoms were identified. The behavior of RGD in contact with the TiO(2) layer was elucidated in detail by the analysis of atom-atom distances, backbone dihedral angles and hydration layers distributed over the interface. The simulation results suggest that, the attachment modes of tripeptides with the same starting arrangement are similar when solvated in TIP3P and SPC/E water, but the conformational stability of the amino sequence is somewhat sensitive to the adopted solvent model. Moreover, the intensity of peptide-surface interaction varies widely depending on the initial arrangement of the RGD sequence.
采用两种不同的水分子模型 TIP3P(可转移的相互作用分子 3P)和 SPC/E(扩展简单点电荷),通过分子动力学(MD)模拟系统地研究了 Arg-Gly-Asp(RGD)三肽在水溶液中不同取向在锐钛矿 TiO(2)(110)表面上的吸附行为和动力学。确定了以氢键相互作用形式的可能的 RGD-TiO(2)结合模式,涉及酰胺基团(NH(3)(+) 或 NH(2)(+)、NH(2))和表面氧原子。通过分析原子-原子距离、骨架二面角和分布在界面上的水合层,详细阐明了 RGD 与 TiO(2)层接触时的行为。模拟结果表明,在 TIP3P 和 SPC/E 水中,具有相同起始排列的三肽的附着模式相似,但氨基酸序列的构象稳定性对所采用的溶剂模型有些敏感。此外,肽-表面相互作用的强度取决于 RGD 序列的初始排列。