Evolva SA, Reinach, Switzerland.
Antimicrob Agents Chemother. 2014;58(1):455-66. doi: 10.1128/AAC.01443-13. Epub 2013 Nov 4.
Human fungal infections represent a therapeutic challenge. Although effective strategies for treatment are available, resistance is spreading, and many therapies have unacceptable side effects. A clear need for novel antifungal targets and molecules is thus emerging. Here, we present the identification and characterization of the plant-derived diyne-furan fatty acid EV-086 as a novel antifungal compound. EV-086 has potent and broad-spectrum activity in vitro against Candida, Aspergillus, and Trichophyton spp., whereas activities against bacteria and human cell lines are very low. Chemical-genetic profiling of Saccharomyces cerevisiae deletion mutants identified lipid metabolic processes and organelle organization and biogenesis as targets of EV-086. Pathway modeling suggested that EV-086 inhibits delta-9 fatty acid desaturation, an essential process in S. cerevisiae, depending on the delta-9 fatty acid desaturase OLE1. Delta-9 unsaturated fatty acids-but not saturated fatty acids-antagonized the EV-086-mediated growth inhibition, and transcription of the OLE1 gene was strongly upregulated in the presence of EV-086. EV-086 increased the ratio of saturated to unsaturated free fatty acids and phosphatidylethanolamine fatty acyl chains, respectively. Furthermore, EV-086 was rapidly taken up into the lipid fraction of the cell and incorporated into phospholipids. Together, these findings demonstrate that EV-086 is an inhibitor of delta-9 fatty acid desaturation and that the mechanism of inhibition might involve an EV-086-phospholipid. Finally, EV-086 showed efficacy in a guinea pig skin dermatophytosis model of topical Trichophyton infection, which demonstrates that delta-9 fatty acid desaturation is a valid antifungal target, at least for dermatophytoses.
人类真菌感染是一个治疗挑战。虽然有有效的治疗策略,但耐药性正在蔓延,许多治疗方法有不可接受的副作用。因此,人们迫切需要新的抗真菌靶点和分子。在这里,我们介绍了植物源性二炔-呋喃脂肪酸 EV-086 的鉴定和特性,它是一种新型抗真菌化合物。EV-086 在体外对念珠菌、曲霉和毛癣菌具有强大而广谱的活性,而对细菌和人细胞系的活性非常低。酿酒酵母缺失突变体的化学遗传特征鉴定表明,EV-086 的作用靶点是脂质代谢过程、细胞器组织和生物发生。途径建模表明,EV-086 抑制 delta-9 脂肪酸去饱和,这是酿酒酵母的一个必需过程,取决于 delta-9 脂肪酸去饱和酶 OLE1。delta-9 不饱和脂肪酸——而不是饱和脂肪酸——拮抗了 EV-086 介导的生长抑制,并且在存在 EV-086 的情况下,OLE1 基因的转录被强烈上调。EV-086 分别增加了饱和和不饱和游离脂肪酸以及磷脂酰乙醇胺脂肪酸链的比例。此外,EV-086 迅速被细胞的脂质部分吸收,并整合到磷脂中。总之,这些发现表明 EV-086 是 delta-9 脂肪酸去饱和酶的抑制剂,抑制机制可能涉及 EV-086-磷脂。最后,EV-086 在豚鼠皮肤皮肤癣菌感染的局部 Trichophyton 感染的皮肤病模型中显示出疗效,这表明 delta-9 脂肪酸去饱和是一个有效的抗真菌靶点,至少对皮肤癣菌病是如此。