Poongavanam Vasanthanathan, Danelius Emma, Peintner Stefan, Alcaraz Lilian, Caron Giulia, Cummings Maxwell D, Wlodek Stanislaw, Erdelyi Mate, Hawkins Paul C D, Ermondi Giuseppe, Kihlberg Jan
Department of Chemistry-BMC, Uppsala University, Box 576, SE-75123 Uppsala, Sweden.
Department of Chemistry and Molecular Biology, University of Gothenburg, Kemivägen 10, SE-41296 Gothenburg, Sweden.
ACS Omega. 2018 Sep 30;3(9):11742-11757. doi: 10.1021/acsomega.8b01379. Epub 2018 Sep 24.
Conformational flexibility is a major determinant of the properties of macrocycles and other drugs in beyond rule of 5 (bRo5) space. Prediction of conformations is essential for design of drugs in this space, and we have evaluated three tools for conformational sampling of a set of 10 bRo5 drugs and clinical candidates in polar and apolar environments. The distance-geometry based OMEGA was found to yield ensembles spanning larger structure and property spaces than the ensembles obtained by MOE-LowModeMD (MOE) and MacroModel (MC). Both MC and OMEGA but not MOE generated different ensembles for polar and apolar environments. All three conformational search methods generated conformers similar to the crystal structure conformers for 9 of the 10 compounds, with OMEGA performing somewhat better than MOE and MC. MOE and OMEGA found all six conformers of roxithromycin that were identified by NMR in aqueous solutions, whereas only OMEGA sampled the three conformers observed in chloroform. We suggest that characterization of conformers using molecular descriptors, e.g., the radius of gyration and polar surface area, is preferred to energy- or root-mean-square deviation-based methods for selection of biologically relevant conformers in drug discovery in bRo5 space.
构象灵活性是大环化合物及其他处于“5规则之外”(bRo5)空间的药物性质的主要决定因素。构象预测对于该空间内药物的设计至关重要,我们评估了三种工具,用于对一组10种bRo5药物及临床候选药物在极性和非极性环境中的构象进行采样。结果发现,基于距离几何算法的OMEGA生成的构象集合比通过MOE-LowModeMD(MOE)和MacroModel(MC)获得的构象集合跨越更大的结构和性质空间。MC和OMEGA都能针对极性和非极性环境生成不同的构象集合,但MOE不能。对于10种化合物中的9种,所有三种构象搜索方法生成的构象都与晶体结构构象相似,其中OMEGA的表现略优于MOE和MC。MOE和OMEGA找到了罗红霉素在水溶液中通过核磁共振鉴定出的所有六种构象,而只有OMEGA对在氯仿中观察到的三种构象进行了采样。我们建议,在bRo5空间的药物发现中,使用分子描述符(例如回转半径和极性表面积)来表征构象,比基于能量或均方根偏差的方法更适合用于选择具有生物学相关性的构象。