Synthetic biology based construction of biological activity-related library of fungal decalin-containing diterpenoid pyrones

Combining genome mining and heterologous expression in a genetically tractable host can lead to bioactive natural products discovery and production. Here, the authors employ this strategy for new decalin-containing diterpenoid pyrenes production by expressing native, extended, and shunt pathways in...

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Autores principales: Kento Tsukada, Shono Shinki, Akiho Kaneko, Kazuma Murakami, Kazuhiro Irie, Masatoshi Murai, Hideto Miyoshi, Shingo Dan, Kumi Kawaji, Hironori Hayashi, Eiichi N. Kodama, Aki Hori, Emil Salim, Takayuki Kuraishi, Naoya Hirata, Yasunari Kanda, Teigo Asai
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Publicado: Nature Portfolio 2020
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Acceso en línea:https://doaj.org/article/b8d5d9bdb0c848689511d663ed7160bb
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spelling oai:doaj.org-article:b8d5d9bdb0c848689511d663ed7160bb2021-12-02T16:56:32ZSynthetic biology based construction of biological activity-related library of fungal decalin-containing diterpenoid pyrones10.1038/s41467-020-15664-42041-1723https://doaj.org/article/b8d5d9bdb0c848689511d663ed7160bb2020-04-01T00:00:00Zhttps://doi.org/10.1038/s41467-020-15664-4https://doaj.org/toc/2041-1723Combining genome mining and heterologous expression in a genetically tractable host can lead to bioactive natural products discovery and production. Here, the authors employ this strategy for new decalin-containing diterpenoid pyrenes production by expressing native, extended, and shunt pathways in Aspergillus oryzae.Kento TsukadaShono ShinkiAkiho KanekoKazuma MurakamiKazuhiro IrieMasatoshi MuraiHideto MiyoshiShingo DanKumi KawajiHironori HayashiEiichi N. KodamaAki HoriEmil SalimTakayuki KuraishiNaoya HirataYasunari KandaTeigo AsaiNature PortfolioarticleScienceQENNature Communications, Vol 11, Iss 1, Pp 1-12 (2020)
institution DOAJ
collection DOAJ
language EN
topic Science
Q
spellingShingle Science
Q
Kento Tsukada
Shono Shinki
Akiho Kaneko
Kazuma Murakami
Kazuhiro Irie
Masatoshi Murai
Hideto Miyoshi
Shingo Dan
Kumi Kawaji
Hironori Hayashi
Eiichi N. Kodama
Aki Hori
Emil Salim
Takayuki Kuraishi
Naoya Hirata
Yasunari Kanda
Teigo Asai
Synthetic biology based construction of biological activity-related library of fungal decalin-containing diterpenoid pyrones
description Combining genome mining and heterologous expression in a genetically tractable host can lead to bioactive natural products discovery and production. Here, the authors employ this strategy for new decalin-containing diterpenoid pyrenes production by expressing native, extended, and shunt pathways in Aspergillus oryzae.
format article
author Kento Tsukada
Shono Shinki
Akiho Kaneko
Kazuma Murakami
Kazuhiro Irie
Masatoshi Murai
Hideto Miyoshi
Shingo Dan
Kumi Kawaji
Hironori Hayashi
Eiichi N. Kodama
Aki Hori
Emil Salim
Takayuki Kuraishi
Naoya Hirata
Yasunari Kanda
Teigo Asai
author_facet Kento Tsukada
Shono Shinki
Akiho Kaneko
Kazuma Murakami
Kazuhiro Irie
Masatoshi Murai
Hideto Miyoshi
Shingo Dan
Kumi Kawaji
Hironori Hayashi
Eiichi N. Kodama
Aki Hori
Emil Salim
Takayuki Kuraishi
Naoya Hirata
Yasunari Kanda
Teigo Asai
author_sort Kento Tsukada
title Synthetic biology based construction of biological activity-related library of fungal decalin-containing diterpenoid pyrones
title_short Synthetic biology based construction of biological activity-related library of fungal decalin-containing diterpenoid pyrones
title_full Synthetic biology based construction of biological activity-related library of fungal decalin-containing diterpenoid pyrones
title_fullStr Synthetic biology based construction of biological activity-related library of fungal decalin-containing diterpenoid pyrones
title_full_unstemmed Synthetic biology based construction of biological activity-related library of fungal decalin-containing diterpenoid pyrones
title_sort synthetic biology based construction of biological activity-related library of fungal decalin-containing diterpenoid pyrones
publisher Nature Portfolio
publishDate 2020
url https://doaj.org/article/b8d5d9bdb0c848689511d663ed7160bb
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