State Key Laboratory of Bioreactor Engineering, East China University of Science of Technology, Shanghai, 200237, China.
Lab of Pharmaceutical Crystal Engineering Research and Technology, East China University of Science and Technology, Shanghai, 200237, China.
Appl Microbiol Biotechnol. 2024 Oct 8;108(1):483. doi: 10.1007/s00253-024-13299-9.
Terpenoids are known for their diverse structures and broad bioactivities with significant potential in pharmaceutical applications. However, natural products with low yields are usually ignored in traditional chemical analysis. Feature-based molecular networking (FBMN) was developed recently to cluster compounds with similar skeletons, which can highlight trace amounts of unknown compounds. Fusoxypene A is a sesterterpene synthesized by Fusarium oxysporum fusoxypene synthase (FoFS) with a unique 5/6/7/3/5 ring system. In this study, the FoFS-containing biosynthetic gene cluster was identified from F. oxysporum FO14005, and an efficient FBMN-based strategy was established to characterize four new sesterterpenoids, fusoxyordienoid A-D (1-4), based on a small-scale fermentation strategy. A cytochrome P450 monooxygenase, FusB, was found to be involved in the functionalization of fusoxypene A at C-17 and C-24 and responsible for the hydroxylation of fusoxyordienoid A at C-1 and C-8. This study highlights the potential of FBMN as a powerful tool for the discovery and characterization of natural compounds with low abundance. KEY POINTS: Combined small-scale fermentation and FBMN for rapid discovery of fusoxyordienoids Characterization of four new fusoxyordienoids with 5/6/7/3/5 ring system Biosynthetic pathway elucidation via tandem expression and substrate feeding.
萜类化合物以其多样的结构和广泛的生物活性而闻名,在药物应用方面具有巨大的潜力。然而,传统化学分析通常忽略了产量较低的天然产物。基于特征的分子网络(FBMN)最近被开发出来,用于聚类具有相似骨架的化合物,这可以突出痕量未知化合物。Fusoxypene A 是由 Fusarium oxysporum fusoxypene 合酶(FoFS)合成的一种甾体萜烯,具有独特的 5/6/7/3/5 环系统。在本研究中,从 F. oxysporum FO14005 中鉴定出含有 FoFS 的生物合成基因簇,并建立了一种基于 FBMN 的高效策略,基于小规模发酵策略,对 4 种新型甾体萜烯,fusoxyordienoid A-D(1-4)进行了表征。发现一种细胞色素 P450 单加氧酶 FusB 参与了 fusoxypene A 在 C-17 和 C-24 位的功能化,以及 fusoxyordienoid A 在 C-1 和 C-8 位的羟化。本研究强调了 FBMN 作为一种发现和表征低丰度天然化合物的有力工具的潜力。 要点: 结合小规模发酵和 FBMN 快速发现 fusoxyordienoids 对具有 5/6/7/3/5 环系统的 4 种新型 fusoxyordienoids 进行表征 通过串联表达和底物喂养阐明生物合成途径。