| Literature DB >> 28110957 |
Xiao-Qing Yu1, Chang-Sheng Jiang1, Yi Zhang1, Pan Sun1, Tibor Kurtán2, Attila Mándi2, Xiao-Lu Li3, Li-Gong Yao3, Ai-Hong Liu4, Bin Wang1, Yue-Wei Guo3, Shui-Chun Mao5.
Abstract
Eleven highly halogenated chamigrane sesquiterpenoids, compositacins A-K, including one unusual rearranged chamigrane sesquiterpenoid, compositacin A, were isolated from the red alga Laurencia composita Yamada, along with seven known structural analogues. Compositacins B and D are the first examples of chamigranes bearing an ether bridge involving C-5/C-9 and C-3/C-5, respectively, while compositacins B and C represent the first chamigranes with a C-10 carbonyl group. Their structures were elucidated on the basis of extensive spectroscopic analysis. The absolute configuration of compositacin B was determined by ECD calculation, whereas the absolute configurations of compositacins A and C-L were proposed on biosynthetic grounds by comparison to compositacin B and the related known sesquiterpenoids johnstonol and yicterpene A. We also suggest that the structure of the previously reported sesquiterpenoid laurokamin A should be revised. Cytotoxicity and antifungal activity of these isolates were also investigated. The results showed that compositacin G exhibited good antifungal activity against Microsporum gypseum (Cmccfmza) with a MIC80 value of 4 μg/mL relative to positive controls. Four of the chamigrane halosesquiterpenoids showed marginal cytotoxicity against the A-549 human lung adenocarcinoma cell line with IC50 values ranging from 48.6 to 85.2 μM.Entities:
Keywords: Antifungal activity; Chamigrane sesquiterpenoid; Compositacins A–K; Cytotoxicity; ECD calculation; Laurencia composita; Rearranged chamigrane sesquiterpenoid; Rhodomelaceae; X-ray diffraction
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Year: 2017 PMID: 28110957 DOI: 10.1016/j.phytochem.2017.01.007
Source DB: PubMed Journal: Phytochemistry ISSN: 0031-9422 Impact factor: 4.072