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Discovery of Farnesoid X Receptor Antagonists Based on a Library of Oleanolic Acid 3-O-Esters through Diverse Substituent Design and Molecular Docking Methods.


ABSTRACT: The pentacyclic triterpene oleanolic acid (OA, 1) with known farnesoid X receptor (FXR) modulatory activity was modified at its C-3 position to find new FXR-interacting agents. A diverse substitution library of OA derivatives was constructed in silico through a 2D fingerprint similarity cluster strategy. With further docking analysis, four top-scored OA 3-O-ester derivatives were selected for synthesis. The bioassay results indicated that all four compounds 3 inhibited chenodeoxycholic acid (CDCA)-induced FXR transactivation in a concentration-dependent mode. Among them 3b and 3d are more active than the parent compound OA. A molecular simulation study was performed to attempt to explain the structure-activity relationship (SAR) and the antagonistic action. To the best of our knowledge, this is the first report on semi-synthetic pentacyclic triterpenoids with FXR-modulatory activities.

SUBMITTER: Wang SR 

PROVIDER: S-EPMC6154651 | biostudies-literature | 2017 Apr

REPOSITORIES: biostudies-literature

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Discovery of Farnesoid X Receptor Antagonists Based on a Library of Oleanolic Acid 3-O-Esters through Diverse Substituent Design and Molecular Docking Methods.

Wang Shao-Rong SR   Xu Tingting T   Deng Kai K   Wong Chi-Wai CW   Liu Jinsong J   Fang Wei-Shuo WS  

Molecules (Basel, Switzerland) 20170426 5


The pentacyclic triterpene oleanolic acid (OA, <b>1</b>) with known farnesoid X receptor (FXR) modulatory activity was modified at its C-3 position to find new FXR-interacting agents. A diverse substitution library of OA derivatives was constructed in silico through a 2D fingerprint similarity cluster strategy. With further docking analysis, four top-scored OA 3-<i>O</i>-ester derivatives were selected for synthesis. The bioassay results indicated that all four compounds <b>3</b> inhibited cheno  ...[more]

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