Mishra Navnit Kumar, Kulhánek Petr, Snajdrová Lenka, Petrek Martin, Imberty Anne, Koca Jaroslav
National Centre for Biomolecular Research, Faculty of Science, Kotlárská 2, Masaryk University, 611 37 Brno, Czech Republic.
Proteins. 2008 Jul;72(1):382-92. doi: 10.1002/prot.21935.
We present the results of a series of 10-ns molecular dynamics simulations on Pseudomonas aeruginosa lectin-II (PA-IIL) and its complexes with four different monosaccharides. We compare the saccharide-free, saccharide-occupied, and saccharide- and ion-free forms of the lectin. The results are coupled with analysis of the water density map and calcium coordination. The water density pattern around the binding site in the free lectin molecular dynamics was fitted with that in the X-ray and with the hydroxyl groups of the monosaccharide within the lectin/monosaccharide complexes and the best ligand was predicted based on the best fit. Interestingly, the water density pattern around the binding site in the uncomplexed lectin exactly fitted the O2, O3, and O4 hydroxyl groups of the fucose complex with the lectin. This observation could lead to a hypothesis that the replacement of these three water molecules from the binding site by the monosaccharide decreases the entropy of the complex and increases the entropy of the water molecules, which favors the binding. It suggests that the high density peaks of the solvent around the binding site in the free protein could be the tool to predict hydroxyl group orientation of the sugar in the protein/sugar complexes. The high affinity of PA-IIL binding site is also attributed to the presence of two calcium ions, each of them making five to six coordinations with the protein part and two coordinations with either water or the monosaccharide. When the calcium ions are removed from the simulated system, they are replaced by sodium ions from the solvent. These observations rationalize the high binding affinity of PA-IIL towards fucose.
我们展示了一系列关于铜绿假单胞菌凝集素-II(PA-IIL)及其与四种不同单糖复合物的10纳秒分子动力学模拟结果。我们比较了凝集素的无糖类、糖类占据以及无糖类和离子形式。结果结合了水密度图分析和钙配位情况。将游离凝集素分子动力学中结合位点周围的水密度模式与X射线中的模式以及凝集素/单糖复合物中单糖的羟基进行拟合,并基于最佳拟合预测最佳配体。有趣的是,未结合凝集素中结合位点周围的水密度模式与凝集素岩藻糖复合物的O2、O3和O4羟基完全吻合。这一观察结果可能引发一个假设,即单糖取代结合位点中的这三个水分子会降低复合物的熵并增加水分子的熵,这有利于结合。这表明游离蛋白质中结合位点周围溶剂的高密度峰可能是预测蛋白质/糖复合物中糖羟基取向的工具。PA-IIL结合位点的高亲和力还归因于两个钙离子的存在,每个钙离子与蛋白质部分形成五到六个配位,与水或单糖形成两个配位。当从模拟系统中去除钙离子时,它们会被溶剂中的钠离子取代。这些观察结果解释了PA-IIL对岩藻糖的高结合亲和力。