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Synthetic Lethal Activity of Benzophenanthridine Alkaloids From Zanthoxylum coco Against BRCA1-Deficient Cancer Cells

Several plants from South America show strong antitumoral properties based on anti-proliferative and/or pro-apoptotic activities. In this work we aimed to identify selective cytotoxic compounds that target BRCA1-deficient cancer cells by Synthetic Lethality (SL) induction. Using a high-throughput sc...

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Autores principales: García, Iris A., Pansa, Maria Florencia, Pacciaroni, Adriana Del Valle, García, Manuela E., Gonzalez, Maria Laura, Oberti, Juan Carlos, Bocco, José Luís, Carpinella, Maria Cecilia, Barboza, Gloria E., Nicotra, Viviana E., Soria, Gastón
Formato: Online Artículo Texto
Lenguaje:English
Publicado: Frontiers Media S.A. 2020
Materias:
Acceso en línea:https://www.ncbi.nlm.nih.gov/pmc/articles/PMC7793782/
https://www.ncbi.nlm.nih.gov/pubmed/33424604
http://dx.doi.org/10.3389/fphar.2020.593845
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author García, Iris A.
Pansa, Maria Florencia
Pacciaroni, Adriana Del Valle
García, Manuela E.
Gonzalez, Maria Laura
Oberti, Juan Carlos
Bocco, José Luís
Carpinella, Maria Cecilia
Barboza, Gloria E.
Nicotra, Viviana E.
Soria, Gastón
author_facet García, Iris A.
Pansa, Maria Florencia
Pacciaroni, Adriana Del Valle
García, Manuela E.
Gonzalez, Maria Laura
Oberti, Juan Carlos
Bocco, José Luís
Carpinella, Maria Cecilia
Barboza, Gloria E.
Nicotra, Viviana E.
Soria, Gastón
author_sort García, Iris A.
collection PubMed
description Several plants from South America show strong antitumoral properties based on anti-proliferative and/or pro-apoptotic activities. In this work we aimed to identify selective cytotoxic compounds that target BRCA1-deficient cancer cells by Synthetic Lethality (SL) induction. Using a high-throughput screening technology developed in our laboratory, we analyzed a collection of extracts from 46 native plant species from Argentina using a wide dose-response scheme. A highly selective SL-induction capacity was found in an alkaloidal extract from Zanthoxylum coco (Fam. Rutaceae). Bio-guided fractionation coupled to HPLC led to the identification of active benzophenanthridine alkaloids. The most potent SL activity was found with the compound oxynitidine, which showed a remarkably low relative abundance in the active fractions. Further validation experiments were performed using the commercially available and closely related analog nitidine, which showed SL-induction activity against various BRCA1-deficient cell lines with different genetic backgrounds, even in the nanomolar range. Exploration of the underlying mechanism of action using BRCA1-KO cells revealed AKT and topoisomerases as the potential targets responsible of nitidine-triggered SL-induction. Taken together, our findings expose an unforeseen therapeutic activity of alkaloids from Zanthoxylum-spp. that position them as novel lead molecules for drug discovery.
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spelling pubmed-77937822021-01-09 Synthetic Lethal Activity of Benzophenanthridine Alkaloids From Zanthoxylum coco Against BRCA1-Deficient Cancer Cells García, Iris A. Pansa, Maria Florencia Pacciaroni, Adriana Del Valle García, Manuela E. Gonzalez, Maria Laura Oberti, Juan Carlos Bocco, José Luís Carpinella, Maria Cecilia Barboza, Gloria E. Nicotra, Viviana E. Soria, Gastón Front Pharmacol Pharmacology Several plants from South America show strong antitumoral properties based on anti-proliferative and/or pro-apoptotic activities. In this work we aimed to identify selective cytotoxic compounds that target BRCA1-deficient cancer cells by Synthetic Lethality (SL) induction. Using a high-throughput screening technology developed in our laboratory, we analyzed a collection of extracts from 46 native plant species from Argentina using a wide dose-response scheme. A highly selective SL-induction capacity was found in an alkaloidal extract from Zanthoxylum coco (Fam. Rutaceae). Bio-guided fractionation coupled to HPLC led to the identification of active benzophenanthridine alkaloids. The most potent SL activity was found with the compound oxynitidine, which showed a remarkably low relative abundance in the active fractions. Further validation experiments were performed using the commercially available and closely related analog nitidine, which showed SL-induction activity against various BRCA1-deficient cell lines with different genetic backgrounds, even in the nanomolar range. Exploration of the underlying mechanism of action using BRCA1-KO cells revealed AKT and topoisomerases as the potential targets responsible of nitidine-triggered SL-induction. Taken together, our findings expose an unforeseen therapeutic activity of alkaloids from Zanthoxylum-spp. that position them as novel lead molecules for drug discovery. Frontiers Media S.A. 2020-12-03 /pmc/articles/PMC7793782/ /pubmed/33424604 http://dx.doi.org/10.3389/fphar.2020.593845 Text en Copyright © 2020 Garcia, Pansa, Pacciaroni, García, Gonzalez, Oberti, Bocco, Carpinella, Barboza, Nicotra and Soria http://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 Pharmacology
García, Iris A.
Pansa, Maria Florencia
Pacciaroni, Adriana Del Valle
García, Manuela E.
Gonzalez, Maria Laura
Oberti, Juan Carlos
Bocco, José Luís
Carpinella, Maria Cecilia
Barboza, Gloria E.
Nicotra, Viviana E.
Soria, Gastón
Synthetic Lethal Activity of Benzophenanthridine Alkaloids From Zanthoxylum coco Against BRCA1-Deficient Cancer Cells
title Synthetic Lethal Activity of Benzophenanthridine Alkaloids From Zanthoxylum coco Against BRCA1-Deficient Cancer Cells
title_full Synthetic Lethal Activity of Benzophenanthridine Alkaloids From Zanthoxylum coco Against BRCA1-Deficient Cancer Cells
title_fullStr Synthetic Lethal Activity of Benzophenanthridine Alkaloids From Zanthoxylum coco Against BRCA1-Deficient Cancer Cells
title_full_unstemmed Synthetic Lethal Activity of Benzophenanthridine Alkaloids From Zanthoxylum coco Against BRCA1-Deficient Cancer Cells
title_short Synthetic Lethal Activity of Benzophenanthridine Alkaloids From Zanthoxylum coco Against BRCA1-Deficient Cancer Cells
title_sort synthetic lethal activity of benzophenanthridine alkaloids from zanthoxylum coco against brca1-deficient cancer cells
topic Pharmacology
url https://www.ncbi.nlm.nih.gov/pmc/articles/PMC7793782/
https://www.ncbi.nlm.nih.gov/pubmed/33424604
http://dx.doi.org/10.3389/fphar.2020.593845
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