Tocci Noemi, Weil Tobias, Perenzoni Daniele, Moretto Marco, Nürk Nicolai, Madriñán Santiago, Ferrazza Ruggero, Guella Graziano, Mattivi Fulvio
Research and Innovation Centre, Fondazione Edmund Mach, 38010 San Michele all'Adige (TN), Italy.
Department of Plant Systematics, BayCEER, University of Bayreuth, 95447 Bayreuth, Germany.
Metabolites. 2020 Nov 13;10(11):459. doi: 10.3390/metabo10110459.
The success of antifungal therapies is often hindered by the limited number of available drugs. To close the gap in the antifungal pipeline, the search of novel leads is of primary importance, and here the exploration of neglected plants has great promise for the discovery of new principles. Through bioassay-guided isolation, uliginosin B and five new dimeric acylphloroglucinols (uliginosins C-D, and 3'prenyl uliginosins B-D), besides cembrenoids, have been isolated from the lipophilic extract of . Their structures were elucidated by a combination of Liquid Chromatography - Mass Spectrometry LC-MS and Nuclear Magnetic Resonance (NMR) measurements. The compounds showed strong anti- activity, also against fluconazole-resistant strains, with fungal growth inhibition properties at concentrations ranging from 3 to 32 µM, and reduced or absent cytotoxicity against human cell lines. A chemogenomic screen of 3'prenyl uliginosin B revealed target genes that are important for cell cycle regulation and cytoskeleton assembly in fungi. Taken together, our study suggests dimeric acylphloroglucinols as potential candidates for the development of alternative antifungal therapies.
抗真菌疗法的成功常常受到可用药物数量有限的阻碍。为了填补抗真菌药物研发渠道的空白,寻找新的先导化合物至关重要,而在此过程中,对被忽视植物的探索对于发现新原理具有巨大潜力。通过生物活性导向分离,除了松香烷类化合物外,还从[植物名称未给出]的亲脂性提取物中分离出了uliginosin B和五种新的二聚体酰基间苯三酚(uliginosins C-D和3'-异戊烯基uliginosins B-D)。它们的结构通过液相色谱-质谱联用(LC-MS)和核磁共振(NMR)测量相结合的方法得以阐明。这些化合物表现出强大的抗真菌活性,对氟康唑耐药菌株也有效,在3至32μM的浓度范围内具有抑制真菌生长的特性,并且对人类细胞系的细胞毒性降低或不存在。对3'-异戊烯基uliginosin B的化学基因组筛选揭示了对真菌细胞周期调控和细胞骨架组装重要的靶基因。综上所述,我们的研究表明二聚体酰基间苯三酚是开发替代抗真菌疗法的潜在候选物。