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来自sp. MA37的天然产物的分离与生物活性

Isolation and Bioactivity of Natural Products from sp. MA37.

作者信息

Maglangit Fleurdeliz, Fang Qing, Tabudravu Jioji N, Kyeremeh Kwaku, Jaspars Marcel, Deng Hai

机构信息

Department of Biology and Environmental Science, College of Science, University of the Philippines Cebu, Lahug, Cebu City 6000, Philippines.

Marine Biodiscovery Centre, Department of Chemistry, School of Natural and Computing Sciences, University of Aberdeen, Old Aberdeen AB24 3UE, UK.

出版信息

Molecules. 2025 Jan 14;30(2):306. doi: 10.3390/molecules30020306.

Abstract

The isolation and characterization of bioactive metabolites from species continue to represent a vital area of research, given their potential in natural product drug discovery. In this study, we characterize a new siderophore called legonoxamine I, together with a known compound, streptimidone, from the talented soil bacterium sp. MA37, using chromatographic techniques and spectroscopic analysis. Legonoxamine I is a new holo-siderophore, which is likely to be a derailed product from the biosynthetic pathway of legonoxamine A. We also demonstrate that legonoxamine A possesses potent anticancer activity (IC = 2.2 µM), exhibiting a remarkable ~30-fold increase in potency against MCF-7 ATCC HTB-22 breast cancer cells compared to desferrioxamine B, a structural analogue of legonoxamine A (IC = 61.1 µM). Comparing the structural difference between legonoxamine A and desferrioxamine B, it is deduced that the phenylacetyl moiety in legonoxamine A may have contributed significantly to its enhanced potency. Our findings contribute to the growing library of -derived metabolites and underscore the genus' potential as a promising source of lead compounds.

摘要

鉴于生物活性代谢产物在天然产物药物发现中的潜力,从物种中分离和鉴定这些代谢产物仍然是一个至关重要的研究领域。在本研究中,我们利用色谱技术和光谱分析,从有潜力的土壤细菌MA37中鉴定出一种名为legonoxamine I的新型铁载体以及一种已知化合物链霉咪唑酮。Legonoxamine I是一种新型全铁载体,可能是legonoxamine A生物合成途径中的一个偏离产物。我们还证明,legonoxamine A具有强大的抗癌活性(IC = 2.2 µM),与legonoxamine A的结构类似物去铁胺B(IC = 61.1 µM)相比,其对MCF-7 ATCC HTB-22乳腺癌细胞的活性显著提高了约30倍。通过比较legonoxamine A和去铁胺B的结构差异,推断出legonoxamine A中的苯乙酰基部分可能对其增强的活性有显著贡献。我们的研究结果丰富了源自该属的代谢产物库,并强调了该属作为有前景的先导化合物来源的潜力。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/cd90/11767966/462780db38d4/molecules-30-00306-g001.jpg

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