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真菌转化新型甾体皂甙元环菠萝蜜醇生成神经保护代谢物

Neuroprotective metabolites via fungal biotransformation of a novel sapogenin, cyclocephagenol.

机构信息

Department of Bioengineering, Faculty of Engineering, İzmir Institute of Technology, Urla, 35430, İzmir, Türkiye.

Department of Biochemistry, Faculty of Pharmacy, Ege University, Bornova, 35100, İzmir, Türkiye.

出版信息

Sci Rep. 2022 Nov 2;12(1):18481. doi: 10.1038/s41598-022-22799-5.

Abstract

Cyclocephagenol (1), a novel cycloartane-type sapogenin with tetrahydropyran unit, is only encountered in Astragalus species. This rare sapogenin has never been a topic of biological activity or modification studies. The objectives of this study were; (i) to perform microbial transformation studies on cyclocephagenol (1) using Astragalus endophyte, Alternaria eureka 1E1BL1, followed by isolation and structural characterization of the metabolites; (ii) to investigate neuroprotective activities of the metabolites; (iii) to understand structure-activity relationships towards neuroprotection. The microbial transformation of cyclocephagenol (1) using Alternaria eureka resulted in the production of twenty-one (2-22) previously undescribed metabolites. Oxidation, monooxygenation, dehydration, methyl migration, epoxidation, and ring expansion reactions were observed on the triterpenoid skeleton. Structures of the compounds were established by 1D-, 2D-NMR, and HR-MS analyses. The neuroprotective activities of metabolites and parent compound (1) were evaluated against HO-induced cell injury. The structure-activity relationship (SAR) was established, and the results revealed that 1 and several other metabolites had potent neuroprotective activity. Further studies revealed that selected compounds reduced the amount of ROS and preserved the integrity of the mitochondrial membrane. This is the first report of microbial transformation of cyclocephagenol (1).

摘要

环阿屯醇(1),一种新型的具有四氢吡喃单元的环阿尔廷型甾体皂甙元,仅在黄芪属物种中发现。这种罕见的甾体皂甙元从未成为生物活性或修饰研究的主题。本研究的目的是:(i)使用黄芪内生真菌黄曲霉菌 1E1BL1 对环阿屯醇(1)进行微生物转化研究,然后分离和结构鉴定代谢产物;(ii)研究代谢产物的神经保护活性;(iii)了解结构-活性关系对神经保护的影响。黄曲霉菌对环阿屯醇(1)的微生物转化产生了二十一种(2-22)以前未描述的代谢产物。在三萜骨架上观察到氧化、单加氧、脱水、甲基迁移、环氧化和环扩张反应。通过 1D-NMR、2D-NMR 和 HR-MS 分析确定了化合物的结构。通过 HO 诱导的细胞损伤评估代谢产物和母体化合物(1)的神经保护活性。建立了构效关系(SAR),结果表明 1 和其他几种代谢产物具有很强的神经保护活性。进一步的研究表明,选定的化合物减少了 ROS 的数量并保持了线粒体膜的完整性。这是环阿屯醇(1)微生物转化的首次报道。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/d799/9630500/4b69c7f50540/41598_2022_22799_Fig1_HTML.jpg

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