We report the biochemical characterization of sulfated polyhydroxysterols previously isolated from marine invertebrates as potent antagonists of farnesoid-X-receptor (FXR), a ligand-regulated transcription factor involved in the regulation of lipid and glucose homeostasis in mammals. Molecular characterization of a library of sulfated polyhydroxysteroids resulted in the identification of a first FXR antagonist. In contrast to partial antagonists, this compound was endowed with an antagonistic activity on the expression of a subset of FXR-regulated genes in liver cells and abrogated the release of nuclear coreceptor from the promoter of these genes. The putative binding mode to FXR, obtained through docking calculations, suggested the crucial role played by the bent shape of the molecule as well as the presence of one hydroxyl group in its side chain. This compound is a major tool to explore the effect of FXR inhibition in pharmacological settings.

Discovery of Sulfated Sterols from Marine Invertebrates as a New Class of Marine Natural Antagonists of Farnesoid-X-Receptor / Sepe, Valentina; Bifulco, G.; Renga, B.; D'Amore, C.; Fiorucci, S.; Zampella, Angela. - In: JOURNAL OF MEDICINAL CHEMISTRY. - ISSN 0022-2623. - 54:5(2011), pp. 1314-1320. [10.1021/jm101336m]

Discovery of Sulfated Sterols from Marine Invertebrates as a New Class of Marine Natural Antagonists of Farnesoid-X-Receptor

SEPE, VALENTINA;ZAMPELLA, ANGELA
2011

Abstract

We report the biochemical characterization of sulfated polyhydroxysterols previously isolated from marine invertebrates as potent antagonists of farnesoid-X-receptor (FXR), a ligand-regulated transcription factor involved in the regulation of lipid and glucose homeostasis in mammals. Molecular characterization of a library of sulfated polyhydroxysteroids resulted in the identification of a first FXR antagonist. In contrast to partial antagonists, this compound was endowed with an antagonistic activity on the expression of a subset of FXR-regulated genes in liver cells and abrogated the release of nuclear coreceptor from the promoter of these genes. The putative binding mode to FXR, obtained through docking calculations, suggested the crucial role played by the bent shape of the molecule as well as the presence of one hydroxyl group in its side chain. This compound is a major tool to explore the effect of FXR inhibition in pharmacological settings.
2011
Discovery of Sulfated Sterols from Marine Invertebrates as a New Class of Marine Natural Antagonists of Farnesoid-X-Receptor / Sepe, Valentina; Bifulco, G.; Renga, B.; D'Amore, C.; Fiorucci, S.; Zampella, Angela. - In: JOURNAL OF MEDICINAL CHEMISTRY. - ISSN 0022-2623. - 54:5(2011), pp. 1314-1320. [10.1021/jm101336m]
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Utilizza questo identificativo per citare o creare un link a questo documento: https://hdl.handle.net/11588/413962
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