Zoete Vincent, Meuwly Markus, Karplus Martin
Laboratoire de Chimie Biophysique, ISIS/Université Louis Pasteur, Strasbourg Cedex, France.
Proteins. 2004 May 15;55(3):568-81. doi: 10.1002/prot.20071.
Possible insulin binding sites for D-glucose have been investigated theoretically by docking and molecular dynamics (MD) simulations. Two different docking programs for small molecules were used; Multiple Copy Simultaneous Search (MCSS) and Solvation Energy for Exhaustive Docking (SEED) programs. The configurations resulting from the MCSS search were evaluated with a scoring function developed to estimate the binding free energy. SEED calculations were performed using various values for the dielectric constant of the solute. It is found that scores emphasizing non-polar interactions gave a preferential binding site in agreement with that inferred from recent fluorescence and NMR NOESY experiments. The calculated binding affinity of -1.4 to -3.5 kcal/mol is within the measured range of -2.0 +/- 0.5 kcal/mol. The validity of the binding site is suggested by the dynamical stability of the bound glucose when examined with MD simulations with explicit solvent. Alternative binding sites were found in the simulations and their relative stabilities were estimated. The motions of the bound glucose during molecular dynamics simulations are correlated with the motions of the insulin side chains that are in contact with it and with larger scale insulin motions. These results raise the question of whether glucose binding to insulin could play a role in its activity. The results establish the complementarity of molecular dynamics simulations and normal mode analyses with the search for binding sites proposed with small molecule docking programs.
通过对接和分子动力学(MD)模拟从理论上研究了D-葡萄糖可能的胰岛素结合位点。使用了两种不同的小分子对接程序;多重复同时搜索(MCSS)和穷举对接溶剂化能(SEED)程序。MCSS搜索得到的构型用一个为估计结合自由能而开发的评分函数进行评估。SEED计算使用溶质介电常数的各种值进行。结果发现,强调非极性相互作用的评分给出了一个优先结合位点,这与最近的荧光和核磁共振NOESY实验推断的结果一致。计算得到的-1.4至-3.5千卡/摩尔的结合亲和力在-2.0±0.5千卡/摩尔的测量范围内。当用含明确溶剂的MD模拟检查时,结合葡萄糖的动力学稳定性表明了结合位点的有效性。在模拟中发现了其他结合位点,并估计了它们的相对稳定性。分子动力学模拟过程中结合葡萄糖的运动与与之接触的胰岛素侧链的运动以及更大规模的胰岛素运动相关。这些结果提出了葡萄糖与胰岛素结合是否可能在其活性中起作用的问题。这些结果确立了分子动力学模拟和正常模式分析与小分子对接程序提出的结合位点搜索的互补性。