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Inverse Virtual Screening for the rapid re-evaluation of the presumed biological safe profile of natural products. The case of steviol from Stevia rebaudiana glycosides on farnesoid X receptor (FXR)

Authors :
Angela Zampella
Maria Maddalena Cavalluzzi
Adriana Carino
Giovanni Lentini
Gianluigi Lauro
Ciro Leonardo Pierri
Rosalinda Roselli
Gualtiero Milani
Marianna Potenza
Giuseppe Bifulco
Stefano Fiorucci
Potenza, M.
Cavalluzzi, M. M.
Milani, G.
Lauro, G.
Carino, A.
Roselli, Rosalinda
Fiorucci, S.
Zampella, Angela
Pierri, C. L.
Lentini, G.
Bifulco, Giuseppe
Source :
Bioorganic Chemistry. 111:104897
Publication Year :
2021
Publisher :
Elsevier BV, 2021.

Abstract

Nonnutritive sweeteners (NNSs) are widely employed as dietary substitutes for classical sugars thanks to their safety profile and low toxicity. In this study, a re-evaluation of the biological effects of steviol (1), the main metabolite from Stevia rebaudiana glycosides, was performed using the Inverse Virtual Screening (IVS) target fishing computational approach. Starting from well-known pharmacological properties of Stevia rebaudiana glycosides, this computational tool was employed for predicting the putative interacting targets of 1 and, afterwards, of its five synthetic ester derivatives 2–6, accounting a large panel of proteins involved in cancer and inflammation events. Applying this methodology, the farnesoid X receptor (FXR) was identified as the putative target partner of 1–6. The predicted ligand-protein interactions were corroborated by transactivation assays, specifically disclosing the agonistic activity of 1 and the antagonistic activities of 2–6 on FXR. The reported results highlight the feasibility of IVS as a fast and potent tool for predicting the interacting targets of query compounds, addressing the re-evaluation of their bioactivity. In light of the obtained results, the presumably safe profile of known compounds, such as the case of steviol (1), is critically discussed.

Details

ISSN :
00452068
Volume :
111
Database :
OpenAIRE
Journal :
Bioorganic Chemistry
Accession number :
edsair.doi.dedup.....ce2fafb18b2c2393ecbe4ec7b3eed453
Full Text :
https://doi.org/10.1016/j.bioorg.2021.104897