Department of Pediatrics, University of Wisconsin School of Medicine and Public Health, Madison, WI 53706, USA.
Med Mycol. 2013 Apr;51(3):280-9. doi: 10.3109/13693786.2012.710917. Epub 2012 Aug 28.
Since current antifungal drugs have not kept pace with the escalating medical demands of fungal infections, new, effective medications are required. However, antifungal drug discovery is hindered by the evolutionary similarity of mammalian and fungal cells, which results in fungal drug targets having human homologs and drug non-selectivity. The group III hybrid histidine kinases (HHKs) are an attractive drug target since they are conserved in fungi and absent in mammals. We used a Saccharomyces cerevisiae reporter strain that conditionally expresses HHK to establish a high-throughput bioassay to screen microbial extracts natural products for antifungals. We identified macrotetrolides, a group of related ionophores thought to exhibit restricted antifungal activity. In addition to confirming the use of this bioassay for the discovery of antifungal natural products, we demonstrated broader, more potent fungistatic activity of the macrotetrolides against multiple Candida spp., Cryptococcus spp., and Candida albicans in biofilms. Macrotetrolides were also active in an animal model of C. albicans biofilm, but were found to have inconsistent activity against fluconazole-resistant C. albicans, with most isolates resistant to this natural product. The macrotetrolides do not directly target HHKs, but their selective activity against S. cerevisiae grown in galactose (regardless of Drk1 expression) revealed potential new insight into the role of ion transport in the mode of action of these promising antifungal compounds. Thus, this simple, high-throughput bioassay permitted us to screen microbial extracts, identify natural products as antifungal drugs, and expand our understanding of the activity of macrotetrolides.
由于当前的抗真菌药物未能跟上真菌感染不断升级的医学需求,因此需要新的、有效的药物。然而,抗真菌药物的发现受到哺乳动物和真菌细胞进化相似性的阻碍,这导致真菌药物靶点具有人类同源物和药物非选择性。第三组混合组氨酸激酶(HHK)是一个有吸引力的药物靶点,因为它们在真菌中保守,而在哺乳动物中不存在。我们使用一种条件性表达 HHK 的酿酒酵母报告菌株,建立了一种高通量生物测定法,用于筛选微生物提取物中的天然产物抗真菌药物。我们鉴定了大环内酯类化合物,这是一组被认为具有有限抗真菌活性的相关离子载体。除了证实该生物测定法可用于发现抗真菌天然产物外,我们还证明了大环内酯类化合物对多种念珠菌属、隐球菌属和白色念珠菌生物膜的更广泛、更有效的抑菌活性。大环内酯类化合物在白色念珠菌生物膜的动物模型中也具有活性,但对氟康唑耐药的白色念珠菌的活性不一致,大多数分离株对此种天然产物具有抗性。大环内酯类化合物并不直接靶向 HHK,但它们对在半乳糖中生长的酿酒酵母(无论 Drk1 表达如何)的选择性活性揭示了离子运输在这些有前途的抗真菌化合物作用模式中的潜在新见解。因此,这种简单、高通量的生物测定法使我们能够筛选微生物提取物,鉴定天然产物作为抗真菌药物,并扩展我们对大环内酯类化合物活性的理解。