桔霉素
桔青霉
化学
立体化学
真菌
细胞毒性
代谢物
次生代谢物
生物化学
真菌毒素
体外
植物
食品科学
基因
生物
作者
Zhihui He,Chun‐Lan Xie,Taizong Wu,Yong Zhang,Zheng‐Biao Zou,Ming‐Min Xie,Lin Xu,Robert J. Capon,Ren Xu,Xian‐Wen Yang
标识
DOI:10.1016/j.bioorg.2023.106756
摘要
Marine fungi are prolific source for the discovery of structurally diverse and bioactive molecules. In our search for new anti-osteoporosis compounds from deep-sea-derived fungi, we prioritized a fungus whose extract exhibited moderate activity and rich chemical diversity. The investigation of this strain afforded a class of citrinins, including three new citrinin trimers, neotricitrinols A–C (1–3), and three known dimeric/monomeric precursors (4–6). Neotricitrinols A–C (1–3) feature a unique octacyclic carbon scaffold among the few reported citrinin trimers with their absolute configurations established by spectroscopic analysis, theoretical-statistical approaches (GIAO-NMR, TDDFT-ECD/ORD calculations), DP4+ probability analysis as well as biogenetic consideration. A plausible biosynthetic pathway linking 1–3 from the common intermediate metabolite penicitrinol A (4) was proposed. Biologically, neotricitrinol B (2) showed potential anti-osteoporosis activity by promoting osteoblastogenesis and inhibiting adipogenic differentiation on primary bone mesenchymal stem cells, while displaying no cytotoxicity.
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