| Literature DB >> 26528263 |
Christian Görner1, Max Hirte1, Stephanie Huber1, Patrick Schrepfer1, Thomas Brück1.
Abstract
The diterpene (1R,3E,7E,11S,12S)-3,7,18-dolabellatriene from the marine brown alga Dilophus spiralis belongs to the dolabellanes natural product family and has antimicrobial activity against multi-drug resistant Staphylococcus aureus. Recently, we generated a CotB2 diterpene synthase mutant (W288G), which instead of its native product cyclooctat-9-en-7-ol, generates (1R,3E,7E,11S,12S)-3,7,18-dolabellatriene. In vivo CotB2 W288G reconstitution in an Escherichia coli based terpene production system, allowed efficient production of this olefinic macrocycle. To diversify the 3,7,18-dolabellatriene bioactivity we evaluated chemical and enzymatic methods for selective oxidation. Epoxidation by acetic peracid, which was formed in situ by a lipase catalyzed reaction of acetic acid with H2O2, provided efficient access to two monooxidized dolabellanes and to a novel di-epoxidated dolabellane species. These compounds could act as synthons en-route to new dolabellanes with diversified bioactivities. Furthermore, we demonstrate the almost quantitative 3,7,18-dolabellatriene conversion into the new, non-natural compound (1R,3E,7E,11S,12S,18R)-dolabella-3,7-diene-20-ol by hydroboration-oxidation with an enantiomeric excess of 94%, for the first time.Entities:
Keywords: chemo-enzymatic synthesis; diterpenes; dolabellanes; epoxidation; hydroboration
Year: 2015 PMID: 26528263 PMCID: PMC4602142 DOI: 10.3389/fmicb.2015.01115
Source DB: PubMed Journal: Front Microbiol ISSN: 1664-302X Impact factor: 5.640
Plasmids used to construct the pathway for the production of (1R,3E,7E,11S,12S)-3,7,18-dolabellatriene in Escherichia coli BL21 (DE3).
| Gene(s) | Vector | Multiple cloning site | Restriction sites |
|---|---|---|---|
| pCola-Duet-1 | I | ||
| pCola-Duet-1 | II | ||
| pCDF-Duet-1 | I | ||
| pCDF-Duet-1 | II | ||
| pET-Duet-1 | I | ||
| pET-Duet-1 | II |