Department of Pharmaceutical Sciences and Technology, Institute of Chemical Technology, Matunga (E), Mumbai, 400019, India.
Mol Divers. 2011 May;15(2):435-44. doi: 10.1007/s11030-010-9243-8. Epub 2010 Mar 21.
Inhibitors of aryl acid adenylating enzymes (AAAE), known as MbtA, involved in siderophore biosynthesis in Mycobacterium tuberculosis, are being explored as potential antitubercular agents. In this article, we report the development of a robust pharmacophore model and investigation of structure-activity relationship of several nucleoside bisubstrate analogs reported as MbtA inhibitors. The developed pharmacophore model revealed the importance of two hydrogen bond donors and one hydrogen bond acceptor features. Furthermore, it was found that an aromatic ring at the distal part of molecule away from the two aromatic rings of adenyl moiety is a critical requirement for the tight binding of inhibitor. The generated pharmacophore-based alignment was used to derive a predictive atom-based 3D-QSAR model for training set (r (2) = 0.97, SD = 0.23, F = 310.6, N = 48) and test set (Q (2) = 0.71, RMSE = 0.65, Pearson-R = 0.85, N = 15). Structure-activity relationship investigation further revealed that bulky substitutions at the C-6 position of adenyl moiety is detrimental to activity, while hydrophobic substitutions can be tolerated at C-2 position. Taken together, the PLS-generated QSAR regression cubes along with developed pharmacophore model provide a qualitative picture of the active site and can be used as a powerful tool for the rational modification of bisubstrate inhibitors of MbtA in search of better antitubercular agents. Furthermore, a three-class classification chemometric QSAR model was developed using molecular descriptors for the prediction of whole-cell activity which could be used in the predictive layer for screening of compounds before synthesis.
芳基酸腺苷酸化酶(Ary Acid Adenylating Enzymes,AAAE)抑制剂,如分枝杆菌分枝酸合成中的 MbtA,正被探索作为潜在的抗结核药物。在本文中,我们报告了一种稳健的药效团模型的开发,并研究了几种被报道为 MbtA 抑制剂的核苷双底物类似物的构效关系。所开发的药效团模型揭示了两个氢键供体和一个氢键受体特征的重要性。此外,还发现分子远离腺苷部分的两个芳环的远端部分的芳环是抑制剂紧密结合的关键要求。生成的基于药效团的排列用于衍生训练集的预测基于原子的 3D-QSAR 模型(r(2)= 0.97,SD = 0.23,F = 310.6,N = 48)和测试集(Q(2)= 0.71,RMSE = 0.65,Pearson-R = 0.85,N = 15)。构效关系研究进一步表明,在腺苷部分的 C-6 位置上的大取代基对活性不利,而在 C-2 位置上可以容忍疏水性取代基。综上所述,PLS 生成的 QSAR 回归立体模型和开发的药效团模型提供了活性位点的定性描述,可以作为合理修饰 MbtA 的双底物抑制剂以寻找更好的抗结核药物的有力工具。此外,还开发了一种基于分子描述符的三类别分类化学计量 QSAR 模型,用于预测全细胞活性,可用于在合成前对化合物进行筛选的预测层中使用。