4.5 Article

A selectivity study of benzenesulfonamide derivatives on human carbonic anhydrase II/IX by 3D-QSAR, Molecular Docking and Molecular Dynamics Simulation

期刊

COMPUTATIONAL BIOLOGY AND CHEMISTRY
卷 80, 期 -, 页码 234-243

出版社

ELSEVIER SCI LTD
DOI: 10.1016/j.compbiolchem.2019.03.005

关键词

human carbonic anhydrase II/IX; selectivity; benzenesulfonamide; 3D-QSAR; Topomer CoMFA; Surflex-Dock

资金

  1. National Natural Science Foundation of China [31400667]
  2. Chongqing Municipal Education Commission Science and Technology Research Project [KJ1600908]
  3. Chongqing Research Program of Basic Research and Frontier Technology [cstc2018jcyjAX0683]
  4. Opening Foundation of State Key Laboratory of Silkworm Genome Biology [sklsgb1819-2]
  5. Chongqing Municipal Education Commission Science and Technology [KJZD-K201801102, CXTDX201601031]
  6. Key Project of Natural Science Foundation of Chongqing [cstc2015jcyjBX0080]

向作者/读者索取更多资源

Nowadays, different approaches have been pursued with the intent to develop sulfonamide-like carbonic anhydrase inhibitors that possess better selectivity profiles toward the different human isoforms of the enzyme. Here, we used conventional 3D-QSAR methods, including comparative molecular field analysis (CoMFA), comparative molecular similarity indices analysis (CoMSIA), and Topomer CoMFA, to construct three-dimensional quantitative structure-activity relationship (3D-QSAR) models for benzenesulfonamide derivatives as human carbonic anhydrase (hCA) II/IX inhibitors. The theoretical models had good reliability (R-2 > 0.75) and predictability (Q(2) > 0.55), and the contour maps could graphically present the contributions of the force fields for activity and identify the structural divergence between human carbonic anhydrase II inhibitors and human carbonic anhydrase IX inhibitors. Consequently, we explored the selectivity of inhibitor for human carbonic anhydrase II and IX through molecular docking, and the difference of activity coincides with the potential binding mode well. According to the results of the predicted values and the molecule docking, we found that the inhibitors published in the literature had stronger inhibition on the hCA IX; based on the theoretical models, we designed seven new compounds with good potential activity and reasonably good ADMET profile, which could selectively inhibit hCA IX. Molecular Dynamics Simulation showed that newly-designed compound D7 had good selectivity on hCA IX. The findings from 3D-QSAR and docking studies maybe helpful in the rational drug design of isoform-selective inhibitors.

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