Liebl Maximilian, Huber Ludwig, Elsaman Hesham, Merschak Petra, Wagener Johannes, Gsaller Fabio, Müller Christoph
Department of Pharmacy, Center for Drug Research, Ludwig-Maximilians University, 81377 Munich, Germany.
Institute for Hygiene and Microbiology, Julius-Maximilians-University Wuerzburg, 97080 Wuerzburg, Germany.
J Fungi (Basel). 2023 Jul 20;9(7):768. doi: 10.3390/jof9070768.
The ergosterol pathway is a promising target for the development of new antifungals since its enzymes are essential for fungal cell growth. Appropriate screening assays are therefore needed that allow the identification of potential inhibitors. We developed a whole-cell screening method, which can be used to identify compounds interacting with the enzymes of isoprenoid biosynthesis, an important part of the ergosterol biosynthesis pathway. The method was validated according to the EMEA guideline on bioanalytical method validation. hyphae and cells were lysed mechanically in an aqueous buffer optimized for the enzymatic deconjugation of isoprenoid pyrophosphates. The residual alcohols were extracted, silylated and analyzed by GC-MS. The obtained isoprenoid pattern provides an indication of the inhibited enzyme, due to the accumulation of specific substrates. By analyzing terbinafine-treated and mutant strains containing tunable gene copies of or , respectively, the method was verified. Downregulation of resulted in a high accumulation of intracellular farnesol as well as elevated levels of geranylgeraniol and isoprenol. The decreased expression of as well as terbinafine treatment led to an increased squalene content. Additional analysis of growth medium revealed high farnesyl pyrophosphate levels extruded during downregulation.
麦角固醇途径是开发新型抗真菌药物的一个有前景的靶点,因为其相关酶对于真菌细胞生长至关重要。因此,需要合适的筛选试验来鉴定潜在抑制剂。我们开发了一种全细胞筛选方法,可用于鉴定与类异戊二烯生物合成(麦角固醇生物合成途径的重要组成部分)的酶相互作用的化合物。该方法根据欧洲药品评价局(EMEA)生物分析方法验证指南进行了验证。菌丝体和细胞在针对类异戊二烯焦磷酸的酶促去共轭优化的水性缓冲液中机械裂解。残留的醇类被萃取、硅烷化并通过气相色谱 - 质谱联用仪(GC-MS)进行分析。由于特定底物的积累,所获得的类异戊二烯模式可指示被抑制的酶。通过分别分析用特比萘芬处理的含有可调节基因拷贝的 或 的突变菌株,该方法得到了验证。 的下调导致细胞内法尼醇大量积累以及香叶基香叶醇和异戊醇水平升高。 的表达降低以及特比萘芬处理导致角鲨烯含量增加。对生长培养基的进一步分析显示,在 下调过程中挤出的法尼基焦磷酸水平很高。