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从海洋放线菌中分离和鉴定抗腺病毒的次生代谢产物。

Isolation and characterization of anti-adenoviral secondary metabolites from marine actinobacteria.

机构信息

Division of Virology, Department of Clinical Microbiology, Umeå University, Umeå SE-90185, Sweden.

Laboratories for Chemical Biology, Department of Chemistry, Umeå University, Umeå SE-90187, Sweden.

出版信息

Mar Drugs. 2014 Jan 28;12(2):799-821. doi: 10.3390/md12020799.

Abstract

Adenovirus infections in immunocompromised patients are associated with high mortality rates. Currently, there are no effective anti-adenoviral therapies available. It is well known that actinobacteria can produce secondary metabolites that are attractive in drug discovery due to their structural diversity and their evolved interaction with biomolecules. Here, we have established an extract library derived from actinobacteria isolated from Vestfjorden, Norway, and performed a screening campaign to discover anti-adenoviral compounds. One extract with anti-adenoviral activity was found to contain a diastereomeric 1:1 mixture of the butenolide secondary alcohols 1a and 1b. By further cultivation and analysis, we could isolate 1a and 1b in different diastereomeric ratio. In addition, three more anti-adenoviral butenolides 2, 3 and 4 with differences in their side-chains were isolated. In this study, the anti-adenoviral activity of these compounds was characterized and substantial differences in the cytotoxic potential between the butenolide analogs were observed. The most potent butenolide analog 3 displayed an EC50 value of 91 μM and no prominent cytotoxicity at 2 mM. Furthermore, we propose a biosynthetic pathway for these compounds based on their relative time of appearance and structure.

摘要

免疫功能低下患者的腺病毒感染与高死亡率相关。目前,尚无有效的抗腺病毒治疗方法。众所周知,放线菌可以产生具有吸引力的次级代谢产物,用于药物发现,这是由于它们的结构多样性及其与生物分子的进化相互作用。在这里,我们建立了一个源自挪威 Vestfjorden 分离的放线菌的提取物文库,并进行了筛选活动,以发现抗腺病毒化合物。一种具有抗腺病毒活性的提取物被发现含有丁烯内酯次级醇 1a 和 1b 的非对映异构体 1:1 混合物。通过进一步的培养和分析,我们可以以不同的非对映异构体比例分离出 1a 和 1b。此外,还分离出三种具有侧链差异的其他抗腺病毒丁烯内酯 2、3 和 4。在这项研究中,我们对这些化合物的抗腺病毒活性进行了表征,并观察到丁烯内酯类似物在细胞毒性潜力方面存在显著差异。最有效的丁烯内酯类似物 3 显示出 91 μM 的 EC50 值,在 2 mM 时没有明显的细胞毒性。此外,我们根据它们的出现时间和结构提出了这些化合物的生物合成途径。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/77ff/3944516/fa36d788ee81/marinedrugs-12-00799-g001.jpg

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