Bijvoet Center for Biomolecular Research, Faculty of Science, Department of Chemistry, Utrecht University, Padualaan 8, 3584CH, Utrecht, The Netherlands.
Proteins. 2013 Mar;81(3):510-8. doi: 10.1002/prot.24210. Epub 2012 Dec 24.
HADDOCK is one of the few docking programs that can explicitly account for water molecules in the docking process. Its solvated docking protocol starts from hydrated molecules and a fraction of the resulting interfacial waters is subsequently removed in a biased Monte Carlo procedure based on water-mediated contact probabilities. The latter were derived from an analysis of water contact frequencies from high-resolution crystal structures. Here, we introduce a simple water-mediated amino acid-amino acid contact probability scale derived from the Kyte-Doolittle hydrophobicity scale and assess its performance on the largest high-resolution dataset developed to date for solvated docking. Both scales yield high-quality docking results. The novel and simple hydrophobicity scale, which should reflect better the physicochemical principles underlying contact propensities, leads to a performance improvement of around 10% in ranking, cluster quality and water recovery at the interface compared with the statistics-based original solvated docking protocol.
HADDOCK 是少数几个可以在对接过程中明确考虑水分子的对接程序之一。它的水合对接方案从水合分子开始,然后在基于水介导接触概率的有偏蒙特卡罗程序中去除一部分界面水。后者是从高分辨率晶体结构中水接触频率的分析中得出的。在这里,我们引入了一个简单的基于 Kyte-Doolittle 疏水性尺度的水介导的氨基酸-氨基酸接触概率尺度,并在迄今为止为水合对接开发的最大高分辨率数据集上评估了其性能。这两个尺度都产生了高质量的对接结果。新的简单疏水性尺度应该更好地反映接触倾向的物理化学原理,与基于统计的原始水合对接方案相比,在排序、聚类质量和界面水回收方面的性能提高了约 10%。