Leibniz Institute for Natural Product Research and Infection Biology, Hans Knöll Institute (HKI), Jena, Germany.
Department of Biotechnology and Biomedicine, Technical University of Denmark, Kongens Lyngby, Denmark.
Magn Reson Chem. 2021 Jan;59(1):34-42. doi: 10.1002/mrc.5070. Epub 2020 Jul 13.
Cadinanes are typical plant sesquiterpenes with a broad range of biological functions. We report the isolation of three cadinanes (1-3) from a bacterial endophyte (Streptomyces sp.) of the mangrove plant Bruguiera gymnorrhiza. The structures of two new cadinenes, (+)-11-hydroxy-epicubenol (1) and (+)-12-hydroxy-epicubenol (2) were elucidated by nuclear magnetic resonance (NMR) and mass spectrometry. The bacterial product (+)-11-hydroxy-epicubenol was elucidated to be an enantiomer of the plant product pubinernoid C. (+)-12-Hydroxy-epicubenol was established as a diastereomer of the basidiomycete product trichapargin A. In addition, a crystal structure analysis corroborated the structure and configuration of 5,11-epoxy-10-cadinanol (3), a cadinane cycloether initially described as a natural product from liverwort. The discovery of oxygenated cadinanes from a bacterial endophyte may set the basis for the production of cadinanes by bacterial fermentation.
贝壳杉烷型倍半萜具有广泛的生物功能,是植物中典型的倍半萜类化合物。我们从红树植物木榄内生真菌(链霉菌属)中分离得到三个贝壳杉烷型倍半萜(1-3)。通过核磁共振(NMR)和质谱鉴定了两个新的贝壳杉烷型倍半萜(+)-11-羟基-表-古巴烯醇(1)和(+)-12-羟基-表-古巴烯醇(2)的结构。细菌产物(+)-11-羟基-表-古巴烯醇被阐明为植物产物蒲宁烯 C 的对映异构体。(+)-12-羟基-表-古巴烯醇被确定为担子菌产物三卡巴嗪 A 的非对映异构体。此外,晶体结构分析证实了 5,11-环氧-10-贝壳杉烷醇(3)的结构和构型,3 是一种贝壳杉烷环醚,最初被描述为一种来自苔藓的天然产物。细菌内生真菌中含氧贝壳杉烷的发现为细菌发酵生产贝壳杉烷奠定了基础。