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Endophytic fungus Pseudofusicoccum stromaticum produces cyclopeptides and plant-related bioactive rotenoids

In the present study, we integrated liquid chromatography high-resolution mass spectrometry (LC-HRMS) and high-throughput DNA sequencing for prospecting cytotoxic specialized metabolites from Pseudofusicoccum stromaticum, an endophytic fungus associated to the medicinal plant Myracrodruon urundeuva....

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Autores principales: Sobreira, Aline C. M., Pinto, Francisco das Chagas L., Florêncio, Katharine G. D., Wilke, Diego V., Staats, Charley C., Streit, Rodrigo de A. S., Freire, Francisco das Chagas de O., Pessoa, Otília D. L., Trindade-Silva, Amaro E., Canuto, Kirley M.
Formato: Online Artículo Texto
Lenguaje:English
Publicado: The Royal Society of Chemistry 2018
Materias:
Acceso en línea:https://www.ncbi.nlm.nih.gov/pmc/articles/PMC9088075/
https://www.ncbi.nlm.nih.gov/pubmed/35547902
http://dx.doi.org/10.1039/c8ra06824k
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author Sobreira, Aline C. M.
Pinto, Francisco das Chagas L.
Florêncio, Katharine G. D.
Wilke, Diego V.
Staats, Charley C.
Streit, Rodrigo de A. S.
Freire, Francisco das Chagas de O.
Pessoa, Otília D. L.
Trindade-Silva, Amaro E.
Canuto, Kirley M.
author_facet Sobreira, Aline C. M.
Pinto, Francisco das Chagas L.
Florêncio, Katharine G. D.
Wilke, Diego V.
Staats, Charley C.
Streit, Rodrigo de A. S.
Freire, Francisco das Chagas de O.
Pessoa, Otília D. L.
Trindade-Silva, Amaro E.
Canuto, Kirley M.
author_sort Sobreira, Aline C. M.
collection PubMed
description In the present study, we integrated liquid chromatography high-resolution mass spectrometry (LC-HRMS) and high-throughput DNA sequencing for prospecting cytotoxic specialized metabolites from Pseudofusicoccum stromaticum, an endophytic fungus associated to the medicinal plant Myracrodruon urundeuva. LC-HRMS profiling allowed identifying putatively eleven compounds in the ethyl acetate extract from P. stromaticum broth. Additionally, a chemical fractionation guided by cytotoxicity combined with spectrometric analysis resulted in the isolation of three compounds: the cyclopeptide cyclo-l-Phe-d-Leu-l-Leu-l-Leu-l-lle along with the known rotenoids rotenolone and tephrosin. MTT assay showed that tephrosin (IC(50) 0.51 μg mL(−1)) has strong cytotoxic effect and may be pointed out as the compound responsible for the antiproliferative activity of P. stromaticum. Next Generation Sequencing (NGS) and genome mining of P. stromaticum draft genome revealed 56 contigs codifying specialized metabolites biosynthesis-related enzymes. Nearly half of such genes (44.6%) could be mapped to orphan Biosynthetic Gene Clusters (BGCs) of related plant pathogens belonging to family Botryosphaeriaceae. Also, screening for rotenoids biosynthetic enzymes led to characterization of a putative chalcone isomerase-like (CHI-like) protein. This is the first report of rotenoids biosynthesized by a fungus, unveiling a unique ability of P. stromaticum.
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spelling pubmed-90880752022-05-10 Endophytic fungus Pseudofusicoccum stromaticum produces cyclopeptides and plant-related bioactive rotenoids Sobreira, Aline C. M. Pinto, Francisco das Chagas L. Florêncio, Katharine G. D. Wilke, Diego V. Staats, Charley C. Streit, Rodrigo de A. S. Freire, Francisco das Chagas de O. Pessoa, Otília D. L. Trindade-Silva, Amaro E. Canuto, Kirley M. RSC Adv Chemistry In the present study, we integrated liquid chromatography high-resolution mass spectrometry (LC-HRMS) and high-throughput DNA sequencing for prospecting cytotoxic specialized metabolites from Pseudofusicoccum stromaticum, an endophytic fungus associated to the medicinal plant Myracrodruon urundeuva. LC-HRMS profiling allowed identifying putatively eleven compounds in the ethyl acetate extract from P. stromaticum broth. Additionally, a chemical fractionation guided by cytotoxicity combined with spectrometric analysis resulted in the isolation of three compounds: the cyclopeptide cyclo-l-Phe-d-Leu-l-Leu-l-Leu-l-lle along with the known rotenoids rotenolone and tephrosin. MTT assay showed that tephrosin (IC(50) 0.51 μg mL(−1)) has strong cytotoxic effect and may be pointed out as the compound responsible for the antiproliferative activity of P. stromaticum. Next Generation Sequencing (NGS) and genome mining of P. stromaticum draft genome revealed 56 contigs codifying specialized metabolites biosynthesis-related enzymes. Nearly half of such genes (44.6%) could be mapped to orphan Biosynthetic Gene Clusters (BGCs) of related plant pathogens belonging to family Botryosphaeriaceae. Also, screening for rotenoids biosynthetic enzymes led to characterization of a putative chalcone isomerase-like (CHI-like) protein. This is the first report of rotenoids biosynthesized by a fungus, unveiling a unique ability of P. stromaticum. The Royal Society of Chemistry 2018-10-17 /pmc/articles/PMC9088075/ /pubmed/35547902 http://dx.doi.org/10.1039/c8ra06824k Text en This journal is © The Royal Society of Chemistry https://creativecommons.org/licenses/by-nc/3.0/
spellingShingle Chemistry
Sobreira, Aline C. M.
Pinto, Francisco das Chagas L.
Florêncio, Katharine G. D.
Wilke, Diego V.
Staats, Charley C.
Streit, Rodrigo de A. S.
Freire, Francisco das Chagas de O.
Pessoa, Otília D. L.
Trindade-Silva, Amaro E.
Canuto, Kirley M.
Endophytic fungus Pseudofusicoccum stromaticum produces cyclopeptides and plant-related bioactive rotenoids
title Endophytic fungus Pseudofusicoccum stromaticum produces cyclopeptides and plant-related bioactive rotenoids
title_full Endophytic fungus Pseudofusicoccum stromaticum produces cyclopeptides and plant-related bioactive rotenoids
title_fullStr Endophytic fungus Pseudofusicoccum stromaticum produces cyclopeptides and plant-related bioactive rotenoids
title_full_unstemmed Endophytic fungus Pseudofusicoccum stromaticum produces cyclopeptides and plant-related bioactive rotenoids
title_short Endophytic fungus Pseudofusicoccum stromaticum produces cyclopeptides and plant-related bioactive rotenoids
title_sort endophytic fungus pseudofusicoccum stromaticum produces cyclopeptides and plant-related bioactive rotenoids
topic Chemistry
url https://www.ncbi.nlm.nih.gov/pmc/articles/PMC9088075/
https://www.ncbi.nlm.nih.gov/pubmed/35547902
http://dx.doi.org/10.1039/c8ra06824k
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