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XIAP as a Target of New Small Organic Natural Molecules Inducing Human Cancer Cell Death

X-linked inhibitor of apoptosis protein (XIAP) is an emerging crucial therapeutic target in cancer. We report on the discovery and characterisation of small organic molecules from Piper genus plants exhibiting XIAP antagonism, namely erioquinol, a quinol substituted in the 4-position with an alkenyl...

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Autores principales: Muñoz, Diego, Brucoli, Martina, Zecchini, Silvia, Sandoval-Hernandez, Adrian, Arboleda, Gonzalo, Lopez-Vallejo, Fabian, Delgado, Wilman, Giovarelli, Matteo, Coazzoli, Marco, Catalani, Elisabetta, Palma, Clara De, Perrotta, Cristiana, Cuca, Luis, Clementi, Emilio, Cervia, Davide
Formato: Online Artículo Texto
Lenguaje:English
Publicado: MDPI 2019
Materias:
Acceso en línea:https://www.ncbi.nlm.nih.gov/pmc/articles/PMC6770071/
https://www.ncbi.nlm.nih.gov/pubmed/31505859
http://dx.doi.org/10.3390/cancers11091336
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author Muñoz, Diego
Brucoli, Martina
Zecchini, Silvia
Sandoval-Hernandez, Adrian
Arboleda, Gonzalo
Lopez-Vallejo, Fabian
Delgado, Wilman
Giovarelli, Matteo
Coazzoli, Marco
Catalani, Elisabetta
Palma, Clara De
Perrotta, Cristiana
Cuca, Luis
Clementi, Emilio
Cervia, Davide
author_facet Muñoz, Diego
Brucoli, Martina
Zecchini, Silvia
Sandoval-Hernandez, Adrian
Arboleda, Gonzalo
Lopez-Vallejo, Fabian
Delgado, Wilman
Giovarelli, Matteo
Coazzoli, Marco
Catalani, Elisabetta
Palma, Clara De
Perrotta, Cristiana
Cuca, Luis
Clementi, Emilio
Cervia, Davide
author_sort Muñoz, Diego
collection PubMed
description X-linked inhibitor of apoptosis protein (XIAP) is an emerging crucial therapeutic target in cancer. We report on the discovery and characterisation of small organic molecules from Piper genus plants exhibiting XIAP antagonism, namely erioquinol, a quinol substituted in the 4-position with an alkenyl group and the alkenylphenols eriopodols A–C. Another isolated compound was originally identified as gibbilimbol B. Erioquinol was the most potent inhibitor of human cancer cell viability when compared with gibbilimbol B and eriopodol A was listed as intermediate. Gibbilimbol B and eriopodol A induced apoptosis through mitochondrial permeabilisation and caspase activation while erioquinol acted on cell fate via caspase-independent/non-apoptotic mechanisms, likely involving mitochondrial dysfunctions and aberrant generation of reactive oxygen species. In silico modelling and molecular approaches suggested that all molecules inhibit XIAP by binding to XIAP-baculoviral IAP repeat domain. This demonstrates a novel aspect of XIAP as a key determinant of tumour control, at the molecular crossroad of caspase-dependent/independent cell death pathway and indicates molecular aspects to develop tumour-effective XIAP antagonists.
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spelling pubmed-67700712019-10-30 XIAP as a Target of New Small Organic Natural Molecules Inducing Human Cancer Cell Death Muñoz, Diego Brucoli, Martina Zecchini, Silvia Sandoval-Hernandez, Adrian Arboleda, Gonzalo Lopez-Vallejo, Fabian Delgado, Wilman Giovarelli, Matteo Coazzoli, Marco Catalani, Elisabetta Palma, Clara De Perrotta, Cristiana Cuca, Luis Clementi, Emilio Cervia, Davide Cancers (Basel) Article X-linked inhibitor of apoptosis protein (XIAP) is an emerging crucial therapeutic target in cancer. We report on the discovery and characterisation of small organic molecules from Piper genus plants exhibiting XIAP antagonism, namely erioquinol, a quinol substituted in the 4-position with an alkenyl group and the alkenylphenols eriopodols A–C. Another isolated compound was originally identified as gibbilimbol B. Erioquinol was the most potent inhibitor of human cancer cell viability when compared with gibbilimbol B and eriopodol A was listed as intermediate. Gibbilimbol B and eriopodol A induced apoptosis through mitochondrial permeabilisation and caspase activation while erioquinol acted on cell fate via caspase-independent/non-apoptotic mechanisms, likely involving mitochondrial dysfunctions and aberrant generation of reactive oxygen species. In silico modelling and molecular approaches suggested that all molecules inhibit XIAP by binding to XIAP-baculoviral IAP repeat domain. This demonstrates a novel aspect of XIAP as a key determinant of tumour control, at the molecular crossroad of caspase-dependent/independent cell death pathway and indicates molecular aspects to develop tumour-effective XIAP antagonists. MDPI 2019-09-09 /pmc/articles/PMC6770071/ /pubmed/31505859 http://dx.doi.org/10.3390/cancers11091336 Text en © 2019 by the authors. Licensee MDPI, Basel, Switzerland. This article is an open access article distributed under the terms and conditions of the Creative Commons Attribution (CC BY) license (http://creativecommons.org/licenses/by/4.0/).
spellingShingle Article
Muñoz, Diego
Brucoli, Martina
Zecchini, Silvia
Sandoval-Hernandez, Adrian
Arboleda, Gonzalo
Lopez-Vallejo, Fabian
Delgado, Wilman
Giovarelli, Matteo
Coazzoli, Marco
Catalani, Elisabetta
Palma, Clara De
Perrotta, Cristiana
Cuca, Luis
Clementi, Emilio
Cervia, Davide
XIAP as a Target of New Small Organic Natural Molecules Inducing Human Cancer Cell Death
title XIAP as a Target of New Small Organic Natural Molecules Inducing Human Cancer Cell Death
title_full XIAP as a Target of New Small Organic Natural Molecules Inducing Human Cancer Cell Death
title_fullStr XIAP as a Target of New Small Organic Natural Molecules Inducing Human Cancer Cell Death
title_full_unstemmed XIAP as a Target of New Small Organic Natural Molecules Inducing Human Cancer Cell Death
title_short XIAP as a Target of New Small Organic Natural Molecules Inducing Human Cancer Cell Death
title_sort xiap as a target of new small organic natural molecules inducing human cancer cell death
topic Article
url https://www.ncbi.nlm.nih.gov/pmc/articles/PMC6770071/
https://www.ncbi.nlm.nih.gov/pubmed/31505859
http://dx.doi.org/10.3390/cancers11091336
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