Yusuf Dilmurat, Davis Andrew M, Kleywegt Gerard J, Schmitt Stefan
AstraZeneca R&D Mölndal, S-431 83 Mölndal, Sweden.
J Chem Inf Model. 2008 Jul;48(7):1411-22. doi: 10.1021/ci800084x. Epub 2008 Jul 4.
A new assessment criterion for docking poses is proposed in which experimental electron density is taken into account when evaluating the ability of docking programs to reproduce experimentally observed binding modes. Three docking programs (Gold, Glide, and Fred) were used to generate poses for a set of 88 protein-ligand complexes for which the crystal structure is known. The new criterion is based on the real space R-factor (RSR), which measures how well a group of atoms-in our case the ligand-fits the experimental electron density by comparing that density to the expected density, calculated from the model (i.e., the predicted ligand pose). The RSR-based measure is compared to the traditional criterion, the root-mean-square distance (RMSD) between the docking pose and the binding configuration in the crystallographic model. The results highlight several shortcomings of the RMSD criterion that do not affect the RSR-based measure. Examples illustrate that the RSR-derived approach allows a more meaningful a posteriori assessment of docking methods and results. Practical implications for docking evaluations and for methodological development work in this field are discussed.
提出了一种新的对接姿势评估标准,在评估对接程序重现实验观察到的结合模式的能力时,该标准考虑了实验电子密度。使用三个对接程序(Gold、Glide和Fred)为一组88个已知晶体结构的蛋白质-配体复合物生成姿势。新的标准基于实空间R因子(RSR),它通过将密度与根据模型(即预测的配体姿势)计算出的预期密度进行比较,来衡量一组原子(在我们的例子中是配体)与实验电子密度的匹配程度。将基于RSR的测量方法与传统标准,即对接姿势与晶体学模型中结合构型之间的均方根距离(RMSD)进行比较。结果突出了RMSD标准的几个缺点,而这些缺点并不影响基于RSR的测量方法。实例表明,基于RSR的方法允许对对接方法和结果进行更有意义的事后评估。讨论了对接评估以及该领域方法开发工作的实际意义。