Cross Simon S J
Tripos UK Ltd, Sunningdale House, Caldecotte Business Park, Milton Keynes, MK7 8LF, United Kingdom.
J Chem Inf Model. 2005 Jul-Aug;45(4):993-1001. doi: 10.1021/ci050026f.
We report on a novel hybrid FlexX/FlexS docking approach, whereby the base fragment of the test ligand is chosen by FlexS superposition onto a cocrystallized template ligand and then fed into FlexX for the incremental construction of the final solution. The new approach is tested on the diverse 200 protein-ligand complex dataset that has been previously described for FlexX validation. In total, 62.9% of the complexes can be reproduced at rank 1 by our approach, which compares favorably with 46.9% when using FlexX alone. In addition, we report "cross-docking" experiments in which several receptor structures of complexes with identical proteins have been used for docking all cocrystallized ligands of these complexes. The results show that, in almost all cases, the hybrid approach can acceptably dock a ligand into a foreign receptor structure using a different ligand template, can give solutions where FlexX alone fails, and tends to give solutions that are more accurately positioned.
我们报告了一种新型的FlexX/FlexS混合对接方法,即通过FlexS将测试配体的基础片段叠加到共结晶模板配体上进行选择,然后将其输入FlexX以逐步构建最终解决方案。新方法在先前用于FlexX验证的多样化200个蛋白质-配体复合物数据集上进行了测试。总体而言,我们的方法能够在排名第1时重现62.9%的复合物,相比单独使用FlexX时的46.9%更具优势。此外,我们报告了“交叉对接”实验,其中使用具有相同蛋白质的复合物的几种受体结构对这些复合物的所有共结晶配体进行对接。结果表明,在几乎所有情况下,混合方法能够使用不同的配体模板将配体合理地对接至外源受体结构中,能够在FlexX单独无法给出解决方案时给出解决方案,并且倾向于给出定位更准确的解决方案。