Cargando…

Producing Novel Fibrinolytic Isoindolinone Derivatives in Marine Fungus Stachybotrys longispora FG216 by the Rational Supply of Amino Compounds According to Its Biosynthesis Pathway

Many fungi in the Stachybotrys genus can produce various isoindolinone derivatives. These compounds are formed by a spontaneous reaction between a phthalic aldehyde precursor and an ammonium ion or amino compounds. In this study, we suggested the isoindolinone biosynthetic gene cluster in Stachybotr...

Descripción completa

Detalles Bibliográficos
Autores principales: Yin, Ying, Fu, Qiang, Wu, Wenhui, Cai, Menghao, Zhou, Xiangshan, Zhang, Yuanxing
Formato: Online Artículo Texto
Lenguaje:English
Publicado: MDPI 2017
Materias:
Acceso en línea:https://www.ncbi.nlm.nih.gov/pmc/articles/PMC5532656/
https://www.ncbi.nlm.nih.gov/pubmed/28678182
http://dx.doi.org/10.3390/md15070214
_version_ 1783253503700893696
author Yin, Ying
Fu, Qiang
Wu, Wenhui
Cai, Menghao
Zhou, Xiangshan
Zhang, Yuanxing
author_facet Yin, Ying
Fu, Qiang
Wu, Wenhui
Cai, Menghao
Zhou, Xiangshan
Zhang, Yuanxing
author_sort Yin, Ying
collection PubMed
description Many fungi in the Stachybotrys genus can produce various isoindolinone derivatives. These compounds are formed by a spontaneous reaction between a phthalic aldehyde precursor and an ammonium ion or amino compounds. In this study, we suggested the isoindolinone biosynthetic gene cluster in Stachybotrys by genome mining based on three reported core genes. Remarkably, there is an additional nitrate reductase (NR) gene copy in the proposed cluster. NR is the rate-limiting enzyme of nitrate reduction. Accordingly, this cluster was speculated to play a role in the balance of ammonium ion concentration in Stachybotrys. Ammonium ions can be replaced by different amino compounds to create structural diversity in the biosynthetic process of isoindolinone. We tested a rational supply of amino compounds ((±)-3-amino-2-piperidinone, glycine, and l-threonine) in the culture of an isoindolinone high-producing marine fungus, Stachybotrys longispora FG216. As a result, we obtained four new kinds of isoindolinone derivatives (FGFC4–GFC7) by this method. Furthermore, high yields of FGFC4–FGFC7 confirmed the outstanding production capacity of FG216. Among the four new isoindolinone derivatives, FGFC6 and FGFC7 showed promising fibrinolytic activities. The knowledge of biosynthesis pathways may be an important attribute for the discovery of novel bioactive marine natural products.
format Online
Article
Text
id pubmed-5532656
institution National Center for Biotechnology Information
language English
publishDate 2017
publisher MDPI
record_format MEDLINE/PubMed
spelling pubmed-55326562017-08-09 Producing Novel Fibrinolytic Isoindolinone Derivatives in Marine Fungus Stachybotrys longispora FG216 by the Rational Supply of Amino Compounds According to Its Biosynthesis Pathway Yin, Ying Fu, Qiang Wu, Wenhui Cai, Menghao Zhou, Xiangshan Zhang, Yuanxing Mar Drugs Article Many fungi in the Stachybotrys genus can produce various isoindolinone derivatives. These compounds are formed by a spontaneous reaction between a phthalic aldehyde precursor and an ammonium ion or amino compounds. In this study, we suggested the isoindolinone biosynthetic gene cluster in Stachybotrys by genome mining based on three reported core genes. Remarkably, there is an additional nitrate reductase (NR) gene copy in the proposed cluster. NR is the rate-limiting enzyme of nitrate reduction. Accordingly, this cluster was speculated to play a role in the balance of ammonium ion concentration in Stachybotrys. Ammonium ions can be replaced by different amino compounds to create structural diversity in the biosynthetic process of isoindolinone. We tested a rational supply of amino compounds ((±)-3-amino-2-piperidinone, glycine, and l-threonine) in the culture of an isoindolinone high-producing marine fungus, Stachybotrys longispora FG216. As a result, we obtained four new kinds of isoindolinone derivatives (FGFC4–GFC7) by this method. Furthermore, high yields of FGFC4–FGFC7 confirmed the outstanding production capacity of FG216. Among the four new isoindolinone derivatives, FGFC6 and FGFC7 showed promising fibrinolytic activities. The knowledge of biosynthesis pathways may be an important attribute for the discovery of novel bioactive marine natural products. MDPI 2017-07-05 /pmc/articles/PMC5532656/ /pubmed/28678182 http://dx.doi.org/10.3390/md15070214 Text en © 2017 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
Yin, Ying
Fu, Qiang
Wu, Wenhui
Cai, Menghao
Zhou, Xiangshan
Zhang, Yuanxing
Producing Novel Fibrinolytic Isoindolinone Derivatives in Marine Fungus Stachybotrys longispora FG216 by the Rational Supply of Amino Compounds According to Its Biosynthesis Pathway
title Producing Novel Fibrinolytic Isoindolinone Derivatives in Marine Fungus Stachybotrys longispora FG216 by the Rational Supply of Amino Compounds According to Its Biosynthesis Pathway
title_full Producing Novel Fibrinolytic Isoindolinone Derivatives in Marine Fungus Stachybotrys longispora FG216 by the Rational Supply of Amino Compounds According to Its Biosynthesis Pathway
title_fullStr Producing Novel Fibrinolytic Isoindolinone Derivatives in Marine Fungus Stachybotrys longispora FG216 by the Rational Supply of Amino Compounds According to Its Biosynthesis Pathway
title_full_unstemmed Producing Novel Fibrinolytic Isoindolinone Derivatives in Marine Fungus Stachybotrys longispora FG216 by the Rational Supply of Amino Compounds According to Its Biosynthesis Pathway
title_short Producing Novel Fibrinolytic Isoindolinone Derivatives in Marine Fungus Stachybotrys longispora FG216 by the Rational Supply of Amino Compounds According to Its Biosynthesis Pathway
title_sort producing novel fibrinolytic isoindolinone derivatives in marine fungus stachybotrys longispora fg216 by the rational supply of amino compounds according to its biosynthesis pathway
topic Article
url https://www.ncbi.nlm.nih.gov/pmc/articles/PMC5532656/
https://www.ncbi.nlm.nih.gov/pubmed/28678182
http://dx.doi.org/10.3390/md15070214
work_keys_str_mv AT yinying producingnovelfibrinolyticisoindolinonederivativesinmarinefungusstachybotryslongisporafg216bytherationalsupplyofaminocompoundsaccordingtoitsbiosynthesispathway
AT fuqiang producingnovelfibrinolyticisoindolinonederivativesinmarinefungusstachybotryslongisporafg216bytherationalsupplyofaminocompoundsaccordingtoitsbiosynthesispathway
AT wuwenhui producingnovelfibrinolyticisoindolinonederivativesinmarinefungusstachybotryslongisporafg216bytherationalsupplyofaminocompoundsaccordingtoitsbiosynthesispathway
AT caimenghao producingnovelfibrinolyticisoindolinonederivativesinmarinefungusstachybotryslongisporafg216bytherationalsupplyofaminocompoundsaccordingtoitsbiosynthesispathway
AT zhouxiangshan producingnovelfibrinolyticisoindolinonederivativesinmarinefungusstachybotryslongisporafg216bytherationalsupplyofaminocompoundsaccordingtoitsbiosynthesispathway
AT zhangyuanxing producingnovelfibrinolyticisoindolinonederivativesinmarinefungusstachybotryslongisporafg216bytherationalsupplyofaminocompoundsaccordingtoitsbiosynthesispathway