Schrödinger, Inc. , 101 SW Main Street, Suite 1300, Portland, Oregon 97204, United States.
J Chem Inf Model. 2014 Oct 27;54(10):2680-96. doi: 10.1021/ci5001696. Epub 2014 Oct 6.
Sampling low energy conformations of macrocycles is challenging due to the large size of many of these molecules and the constraints imposed by the macrocycle. We present a new conformational search method (implemented in MacroModel) that uses brief MD simulations followed by minimization and normal-mode search steps. The method was parametrized using a set of 100 macrocycles from the PDB and CSD. It was then tested on a publicly available data set for which there are published results using alternative methods; we found that when the same force field is used (in this case MMFFs in vacuum), our method tended to identify conformations with lower energies than what the other methods identified. The performance on a new set of 50 macrocycles from the PDB and CSD was also quite good; the mean and median RMSD values for just the ring atoms were 0.60 and 0.33 Å, respectively. However, the RMSD values for macrocycles with more than 30 ring-atoms were quite a bit larger compared to the smaller macrocycles. Possible origins for this and ideas for improving the performance on very large macrocycles are discussed.
由于许多大环分子的体积较大,并且受到大环的限制,因此对大环的低能量构象进行采样具有挑战性。我们提出了一种新的构象搜索方法(在 MacroModel 中实现),该方法使用简短的 MD 模拟,然后进行最小化和正常模式搜索步骤。该方法使用来自 PDB 和 CSD 的 100 个大环进行参数化。然后,我们使用其他方法的已发布结果对其进行了公开数据集的测试;我们发现,当使用相同的力场(在这种情况下是真空中的 MMFFs)时,我们的方法倾向于识别出能量低于其他方法识别出的构象。对于来自 PDB 和 CSD 的新的 50 大环集,该方法的性能也非常好;仅针对环原子的平均和中位数 RMSD 值分别为 0.60 和 0.33Å。但是,具有 30 个以上环原子的大环的 RMSD 值与较小的大环相比要大得多。讨论了这种情况的可能原因以及改进非常大环的性能的想法。