Synthetic Biology Driven Biosynthesis of Unnatural Tropolone Sesquiterpenoids

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dc.identifier.uri http://dx.doi.org/10.15488/10609
dc.identifier.uri https://www.repo.uni-hannover.de/handle/123456789/10687
dc.contributor.author Schotte, Carsten
dc.contributor.author Li, Lei
dc.contributor.author Wibberg, Daniel
dc.contributor.author Kalinowski, Jörn
dc.contributor.author Cox, Russell J.
dc.date.accessioned 2021-03-25T06:34:03Z
dc.date.available 2021-03-25T06:34:03Z
dc.date.issued 2020
dc.identifier.citation Schotte, C.; Li, L.; Wibberg, D.; Kalinowski, J.; Cox, R.J.: Synthetic Biology Driven Biosynthesis of Unnatural Tropolone Sesquiterpenoids. In: Angewandte Chemie - International Edition 59 (2020), Nr. 52, S. 23878-23878. DOI: https://doi.org/10.1002/anie.202009914
dc.description.abstract Tropolone sesquiterpenoids (TS) are an intriguing family of biologically active fungal meroterpenoids that arise through a unique intermolecular hetero Diels–Alder (hDA) reaction between humulene and tropolones. Here, we report on the combinatorial biosynthesis of a series of unprecedented analogs of the TS pycnidione 1 and xenovulene A 2. In a systematic synthetic biology driven approach, we recombined genes from three TS biosynthetic gene clusters (pycnidione 1, xenovulene A 2 and eupenifeldin 3) in the fungal host Aspergillus oryzae NSAR1. Rational design of the reconstituted pathways granted control over the number of hDA reactions taking place, the chemical nature of the fused polyketide moiety (tropolono- vs. monobenzo-pyranyl) and the degree of hydroxylation. Formation of unexpected monobenzopyranyl sesquiterpenoids was investigated using isotope-feeding studies to reveal a new and highly unusual oxidative ring contraction rearrangement. © 2020 Wiley-VCH GmbH eng
dc.language.iso eng
dc.publisher Weinheim : Wiley-VCH Verl.
dc.relation.ispartofseries Angewandte Chemie - International Edition 59 (2020), Nr. 52
dc.rights CC BY-NC 4.0 Unported
dc.rights.uri https://creativecommons.org/licenses/by-nc/4.0/
dc.subject biosynthesis eng
dc.subject meroterpenoid eng
dc.subject pathway engineering eng
dc.subject ring contraction eng
dc.subject tropolone eng
dc.subject.ddc 540 | Chemie ger
dc.title Synthetic Biology Driven Biosynthesis of Unnatural Tropolone Sesquiterpenoids
dc.type Article
dc.type Text
dc.relation.essn 1521-3773
dc.relation.issn 0570-0833
dc.relation.issn 1433-7851
dc.relation.doi https://doi.org/10.1002/anie.202009914
dc.bibliographicCitation.issue 52
dc.bibliographicCitation.volume 59
dc.bibliographicCitation.firstPage 23878
dc.bibliographicCitation.lastPage 23878
dc.description.version publishedVersion
tib.accessRights frei zug�nglich


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