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Isolation and Identification of Isocoumarin Derivatives With Specific Inhibitory Activity Against Wnt Pathway and Metabolome Characterization of Lasiodiplodia venezuelensis

The Wnt signaling pathway controls multiple events during embryonic development of multicellular animals and is carcinogenic when aberrantly activated in adults. Breast cancers are dependent on Wnt pathway overactivation mostly through dysregulation of pathway component protein expression, which nec...

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Autores principales: Pellissier, Léonie, Koval, Alexey, Marcourt, Laurence, Ferreira Queiroz, Emerson, Lecoultre, Nicole, Leoni, Sara, Quiros-Guerrero, Luis-Manuel, Barthélémy, Morgane, Duivelshof, Bastiaan L., Guillarme, Davy, Tardy, Sébastien, Eparvier, Véronique, Perron, Karl, Chave, Jérôme, Stien, Didier, Gindro, Katia, Katanaev, Vladimir, Wolfender, Jean-Luc
Formato: Online Artículo Texto
Lenguaje:English
Publicado: Frontiers Media S.A. 2021
Materias:
Acceso en línea:https://www.ncbi.nlm.nih.gov/pmc/articles/PMC8397479/
https://www.ncbi.nlm.nih.gov/pubmed/34458231
http://dx.doi.org/10.3389/fchem.2021.664489
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author Pellissier, Léonie
Koval, Alexey
Marcourt, Laurence
Ferreira Queiroz, Emerson
Lecoultre, Nicole
Leoni, Sara
Quiros-Guerrero, Luis-Manuel
Barthélémy, Morgane
Duivelshof, Bastiaan L.
Guillarme, Davy
Tardy, Sébastien
Eparvier, Véronique
Perron, Karl
Chave, Jérôme
Stien, Didier
Gindro, Katia
Katanaev, Vladimir
Wolfender, Jean-Luc
author_facet Pellissier, Léonie
Koval, Alexey
Marcourt, Laurence
Ferreira Queiroz, Emerson
Lecoultre, Nicole
Leoni, Sara
Quiros-Guerrero, Luis-Manuel
Barthélémy, Morgane
Duivelshof, Bastiaan L.
Guillarme, Davy
Tardy, Sébastien
Eparvier, Véronique
Perron, Karl
Chave, Jérôme
Stien, Didier
Gindro, Katia
Katanaev, Vladimir
Wolfender, Jean-Luc
author_sort Pellissier, Léonie
collection PubMed
description The Wnt signaling pathway controls multiple events during embryonic development of multicellular animals and is carcinogenic when aberrantly activated in adults. Breast cancers are dependent on Wnt pathway overactivation mostly through dysregulation of pathway component protein expression, which necessitates the search for therapeutically relevant compounds targeting them. Highly diverse microorganisms as endophytes represent an underexplored field in the therapeutic natural products research. In the present work, the objective was to explore the chemical diversity and presence of selective Wnt inhibitors within a unique collection of fungi isolated as foliar endophytes from the long-lived tropical palm Astrocaryum sciophilum. The fungi were cultured, extracted with ethyl acetate, and screened for their effects on the Wnt pathway and cell proliferation. The endophytic strain Lasiodiplodia venezuelensis was prioritized for scaled-up fractionation based on its selective activity. Application of geometric transfer from analytical HPLC conditions to semi-preparative scale and use of dry load sample introduction enabled the isolation of 15 pure compounds in a single step. Among the molecules identified, five are original natural products described for the first time, and six are new to this species. An active fraction obtained by semi-preparative HPLC was re-purified by UHPLC-PDA using a 1.7 µm phenyl column. 75 injections of 8 µg were necessary to obtain sufficient amounts of each compound for structure elucidation and bioassays. Using this original approach, in addition to the two major compounds, a third minor compound identified as (R)-(-)-5-hydroxymellein (18) was obtained, which was found to be responsible for the significant Wnt inhibition activity recorded. Further studies of this compound and its structural analogs showed that only 18 acts in a highly specific manner, with no acute cytotoxicity. This compound is notably selective for upstream components of the Wnt pathway and is able to inhibit the proliferation of three triple negative breast cancer cell lines. In addition to the discovery of Wnt inhibitors of interest, this study contributes to better characterize the biosynthetic potential of L. venezuelensis.
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spelling pubmed-83974792021-08-28 Isolation and Identification of Isocoumarin Derivatives With Specific Inhibitory Activity Against Wnt Pathway and Metabolome Characterization of Lasiodiplodia venezuelensis Pellissier, Léonie Koval, Alexey Marcourt, Laurence Ferreira Queiroz, Emerson Lecoultre, Nicole Leoni, Sara Quiros-Guerrero, Luis-Manuel Barthélémy, Morgane Duivelshof, Bastiaan L. Guillarme, Davy Tardy, Sébastien Eparvier, Véronique Perron, Karl Chave, Jérôme Stien, Didier Gindro, Katia Katanaev, Vladimir Wolfender, Jean-Luc Front Chem Chemistry The Wnt signaling pathway controls multiple events during embryonic development of multicellular animals and is carcinogenic when aberrantly activated in adults. Breast cancers are dependent on Wnt pathway overactivation mostly through dysregulation of pathway component protein expression, which necessitates the search for therapeutically relevant compounds targeting them. Highly diverse microorganisms as endophytes represent an underexplored field in the therapeutic natural products research. In the present work, the objective was to explore the chemical diversity and presence of selective Wnt inhibitors within a unique collection of fungi isolated as foliar endophytes from the long-lived tropical palm Astrocaryum sciophilum. The fungi were cultured, extracted with ethyl acetate, and screened for their effects on the Wnt pathway and cell proliferation. The endophytic strain Lasiodiplodia venezuelensis was prioritized for scaled-up fractionation based on its selective activity. Application of geometric transfer from analytical HPLC conditions to semi-preparative scale and use of dry load sample introduction enabled the isolation of 15 pure compounds in a single step. Among the molecules identified, five are original natural products described for the first time, and six are new to this species. An active fraction obtained by semi-preparative HPLC was re-purified by UHPLC-PDA using a 1.7 µm phenyl column. 75 injections of 8 µg were necessary to obtain sufficient amounts of each compound for structure elucidation and bioassays. Using this original approach, in addition to the two major compounds, a third minor compound identified as (R)-(-)-5-hydroxymellein (18) was obtained, which was found to be responsible for the significant Wnt inhibition activity recorded. Further studies of this compound and its structural analogs showed that only 18 acts in a highly specific manner, with no acute cytotoxicity. This compound is notably selective for upstream components of the Wnt pathway and is able to inhibit the proliferation of three triple negative breast cancer cell lines. In addition to the discovery of Wnt inhibitors of interest, this study contributes to better characterize the biosynthetic potential of L. venezuelensis. Frontiers Media S.A. 2021-08-12 /pmc/articles/PMC8397479/ /pubmed/34458231 http://dx.doi.org/10.3389/fchem.2021.664489 Text en Copyright © 2021 Pellissier, Koval, Marcourt, Ferreira Queiroz, Lecoultre, Leoni, Quiros-Guerrero, Barthélémy, Duivelshof, Guillarme, Tardy, Eparvier, Perron, Chave, Stien, Gindro, Katanaev and Wolfender. https://creativecommons.org/licenses/by/4.0/This is an open-access article distributed under the terms of the Creative Commons Attribution License (CC BY). The use, distribution or reproduction in other forums is permitted, provided the original author(s) and the copyright owner(s) are credited and that the original publication in this journal is cited, in accordance with accepted academic practice. No use, distribution or reproduction is permitted which does not comply with these terms.
spellingShingle Chemistry
Pellissier, Léonie
Koval, Alexey
Marcourt, Laurence
Ferreira Queiroz, Emerson
Lecoultre, Nicole
Leoni, Sara
Quiros-Guerrero, Luis-Manuel
Barthélémy, Morgane
Duivelshof, Bastiaan L.
Guillarme, Davy
Tardy, Sébastien
Eparvier, Véronique
Perron, Karl
Chave, Jérôme
Stien, Didier
Gindro, Katia
Katanaev, Vladimir
Wolfender, Jean-Luc
Isolation and Identification of Isocoumarin Derivatives With Specific Inhibitory Activity Against Wnt Pathway and Metabolome Characterization of Lasiodiplodia venezuelensis
title Isolation and Identification of Isocoumarin Derivatives With Specific Inhibitory Activity Against Wnt Pathway and Metabolome Characterization of Lasiodiplodia venezuelensis
title_full Isolation and Identification of Isocoumarin Derivatives With Specific Inhibitory Activity Against Wnt Pathway and Metabolome Characterization of Lasiodiplodia venezuelensis
title_fullStr Isolation and Identification of Isocoumarin Derivatives With Specific Inhibitory Activity Against Wnt Pathway and Metabolome Characterization of Lasiodiplodia venezuelensis
title_full_unstemmed Isolation and Identification of Isocoumarin Derivatives With Specific Inhibitory Activity Against Wnt Pathway and Metabolome Characterization of Lasiodiplodia venezuelensis
title_short Isolation and Identification of Isocoumarin Derivatives With Specific Inhibitory Activity Against Wnt Pathway and Metabolome Characterization of Lasiodiplodia venezuelensis
title_sort isolation and identification of isocoumarin derivatives with specific inhibitory activity against wnt pathway and metabolome characterization of lasiodiplodia venezuelensis
topic Chemistry
url https://www.ncbi.nlm.nih.gov/pmc/articles/PMC8397479/
https://www.ncbi.nlm.nih.gov/pubmed/34458231
http://dx.doi.org/10.3389/fchem.2021.664489
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