Department of Chemistry, Katholieke Universiteit Leuven, Celestijnenlaan 200F, 3001 Heverlee, Belgium.
J Med Chem. 2011 Sep 8;54(17):6098-105. doi: 10.1021/jm2006468. Epub 2011 Aug 5.
Realistic representation of protein flexibility in biomolecular simulations remains an unsolved fundamental problem and is an active area of research. The high flexibility of the cytochrome P450 2D6 (CYP2D6) active site represents a challenge for accurate prediction of the preferred binding mode and site of metabolism (SOM) for compounds metabolized by this important enzyme. To account for this flexibility, we generated a large ensemble of unbiased CYP2D6 conformations, to which small molecule substrates were docked to predict their experimentally observed SOM. SOM predictivity was investigated as a function of the number of protein structures, the scoring function, the SOM-heme cutoff distance used to distinguish metabolic sites, and intrinsic reactivity. Good SOM predictions for CYP2D6 require information from the protein. A critical parameter is the distance between the heme iron and the candidate site of metabolism. The best predictions were achieved with cutoff distances consistent with the chemistry relevant to CYP2D6 metabolism. Combination of the new ensemble-based docking method with estimated intrinsic reactivities of substrate sites considerably improved the predictivity of the model. Testing on an independent set of substrates yielded area under curve values as high as 0.93, validating our new approach.
在生物分子模拟中,真实地表示蛋白质的柔韧性仍然是一个未解决的基本问题,也是一个活跃的研究领域。细胞色素 P450 2D6(CYP2D6)活性部位的高柔韧性,对于准确预测该重要酶代谢的化合物的首选结合模式和代谢部位(SOM),是一个挑战。为了考虑到这种柔韧性,我们生成了大量无偏 CYP2D6 构象的集合,将小分子底物对接至这些构象中,以预测它们在实验中观察到的 SOM。研究了 SOM 预测性作为蛋白结构数量、评分函数、用于区分代谢部位的 SOM-血红素截止距离以及固有反应性的函数。良好的 CYP2D6 SOM 预测需要来自蛋白质的信息。一个关键参数是血红素铁和候选代谢部位之间的距离。与 CYP2D6 代谢相关的化学性质一致的截止距离,可实现最佳预测。将新的基于集合的对接方法与底物位点的估计固有反应性相结合,大大提高了模型的预测能力。在一组独立的底物上进行测试,得到了高达 0.93 的曲线下面积值,验证了我们的新方法。