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Discovery of Unusual Cyanobacterial Tryptophan-Containing Anabaenopeptins by MS/MS-Based Molecular Networking

Heterocytous cyanobacteria are among the most prolific sources of bioactive secondary metabolites, including anabaenopeptins (APTs). A terrestrial filamentous Brasilonema sp. CT11 collected in Costa Rica bamboo forest as a black mat, was studied using a multidisciplinary approach: genome mining and...

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Autores principales: Saha, Subhasish, Esposito, Germana, Urajová, Petra, Mareš, Jan, Ewe, Daniela, Caso, Alessia, Macho, Markéta, Delawská, Kateřina, Kust, Andreja, Hrouzek, Pavel, Juráň, Josef, Costantino, Valeria, Saurav, Kumar
Formato: Online Artículo Texto
Lenguaje:English
Publicado: MDPI 2020
Materias:
Acceso en línea:https://www.ncbi.nlm.nih.gov/pmc/articles/PMC7503407/
https://www.ncbi.nlm.nih.gov/pubmed/32825321
http://dx.doi.org/10.3390/molecules25173786
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author Saha, Subhasish
Esposito, Germana
Urajová, Petra
Mareš, Jan
Ewe, Daniela
Caso, Alessia
Macho, Markéta
Delawská, Kateřina
Kust, Andreja
Hrouzek, Pavel
Juráň, Josef
Costantino, Valeria
Saurav, Kumar
author_facet Saha, Subhasish
Esposito, Germana
Urajová, Petra
Mareš, Jan
Ewe, Daniela
Caso, Alessia
Macho, Markéta
Delawská, Kateřina
Kust, Andreja
Hrouzek, Pavel
Juráň, Josef
Costantino, Valeria
Saurav, Kumar
author_sort Saha, Subhasish
collection PubMed
description Heterocytous cyanobacteria are among the most prolific sources of bioactive secondary metabolites, including anabaenopeptins (APTs). A terrestrial filamentous Brasilonema sp. CT11 collected in Costa Rica bamboo forest as a black mat, was studied using a multidisciplinary approach: genome mining and HPLC-HRMS/MS coupled with bioinformatic analyses. Herein, we report the nearly complete genome consisting of 8.79 Mbp with a GC content of 42.4%. Moreover, we report on three novel tryptophan-containing APTs; anabaenopeptin 788 (1), anabaenopeptin 802 (2), and anabaenopeptin 816 (3). Furthermore, the structure of two homologues, i.e., anabaenopeptin 802 (2a) and anabaenopeptin 802 (2b), was determined by spectroscopic analysis (NMR and MS). Both compounds were shown to exert weak to moderate antiproliferative activity against HeLa cell lines. This study also provides the unique and diverse potential of biosynthetic gene clusters and an assessment of the predicted chemical space yet to be discovered from this genus.
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spelling pubmed-75034072020-09-23 Discovery of Unusual Cyanobacterial Tryptophan-Containing Anabaenopeptins by MS/MS-Based Molecular Networking Saha, Subhasish Esposito, Germana Urajová, Petra Mareš, Jan Ewe, Daniela Caso, Alessia Macho, Markéta Delawská, Kateřina Kust, Andreja Hrouzek, Pavel Juráň, Josef Costantino, Valeria Saurav, Kumar Molecules Article Heterocytous cyanobacteria are among the most prolific sources of bioactive secondary metabolites, including anabaenopeptins (APTs). A terrestrial filamentous Brasilonema sp. CT11 collected in Costa Rica bamboo forest as a black mat, was studied using a multidisciplinary approach: genome mining and HPLC-HRMS/MS coupled with bioinformatic analyses. Herein, we report the nearly complete genome consisting of 8.79 Mbp with a GC content of 42.4%. Moreover, we report on three novel tryptophan-containing APTs; anabaenopeptin 788 (1), anabaenopeptin 802 (2), and anabaenopeptin 816 (3). Furthermore, the structure of two homologues, i.e., anabaenopeptin 802 (2a) and anabaenopeptin 802 (2b), was determined by spectroscopic analysis (NMR and MS). Both compounds were shown to exert weak to moderate antiproliferative activity against HeLa cell lines. This study also provides the unique and diverse potential of biosynthetic gene clusters and an assessment of the predicted chemical space yet to be discovered from this genus. MDPI 2020-08-20 /pmc/articles/PMC7503407/ /pubmed/32825321 http://dx.doi.org/10.3390/molecules25173786 Text en © 2020 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
Saha, Subhasish
Esposito, Germana
Urajová, Petra
Mareš, Jan
Ewe, Daniela
Caso, Alessia
Macho, Markéta
Delawská, Kateřina
Kust, Andreja
Hrouzek, Pavel
Juráň, Josef
Costantino, Valeria
Saurav, Kumar
Discovery of Unusual Cyanobacterial Tryptophan-Containing Anabaenopeptins by MS/MS-Based Molecular Networking
title Discovery of Unusual Cyanobacterial Tryptophan-Containing Anabaenopeptins by MS/MS-Based Molecular Networking
title_full Discovery of Unusual Cyanobacterial Tryptophan-Containing Anabaenopeptins by MS/MS-Based Molecular Networking
title_fullStr Discovery of Unusual Cyanobacterial Tryptophan-Containing Anabaenopeptins by MS/MS-Based Molecular Networking
title_full_unstemmed Discovery of Unusual Cyanobacterial Tryptophan-Containing Anabaenopeptins by MS/MS-Based Molecular Networking
title_short Discovery of Unusual Cyanobacterial Tryptophan-Containing Anabaenopeptins by MS/MS-Based Molecular Networking
title_sort discovery of unusual cyanobacterial tryptophan-containing anabaenopeptins by ms/ms-based molecular networking
topic Article
url https://www.ncbi.nlm.nih.gov/pmc/articles/PMC7503407/
https://www.ncbi.nlm.nih.gov/pubmed/32825321
http://dx.doi.org/10.3390/molecules25173786
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