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      Integration of Multiple Analytical and Computational Tools for the Discovery of High-Potency Enzyme Inhibitors from Herbal Medicines.

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          Abstract

          Herbal medicines (HMs) are an important source of drugs. In this study, an efficient strategy integrating ultrafiltration LC-MS, microplate bioassays, and molecular docking was proposed to screen high-potency enzyme inhibitors from HMs. Using this strategy, the structure-activity relationships (SARs) including binding-affinity-based SAR, enzymatic-activity-based SAR, and structural-complementarity-based SAR of compounds in an HM can be analyzed to provide abundant information for drug discovery. A prominent advantage of the approach is that it offers a multidimensional perspective to understand enzyme-ligand interactions, which could help to avoid false-positive screening results brought by a single method. By using xanthine oxidase (XOD) as an illustrative case, two types of potent XOD inhibitors, including flavones and coumarins, were successfully screened out from an HM of Ginkgo biloba. The study is expected to set a solid foundation for multidisciplinary cooperation in drug discovery.

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          Author and article information

          Journal
          ChemMedChem
          ChemMedChem
          Wiley
          1860-7187
          1860-7179
          Dec 06 2016
          : 11
          : 23
          Affiliations
          [1 ] State Key Laboratory of Natural Medicines, China Pharmaceutical University, Nanjing, 210009, China.
          Article
          10.1002/cmdc.201600489
          27863030
          f1ae97e9-a4af-4b3d-991d-bbcfa7c2a2ac
          History

          structure-activity relationships,natural products,liquid chromatography,lead compounds,drug discovery

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