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Mechanism of Action of ME1111 a Novel Antifungal Agent for Topical Treatment of Onychomycosis

机译:新型抗真菌药ME1111的局部治疗灰指甲的作用机理

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摘要

Despite the existing treatment options for onychomycosis, there remains a strong demand for potent topical medications. ME1111 is a novel antifungal agent that is active against dermatophytes, has an excellent ability to penetrate human nails, and is being developed as a topical agent for onychomycosis. In the present study, we investigated its mechanism of action. Trichophyton mentagrophytes mutants with reduced susceptibility to ME1111 were selected in our laboratory, and genome sequences were determined for 3 resistant mutants. The inhibitory effect on a candidate target was evaluated by a spectrophotometric enzyme assay using mitochondrial fractions. Point mutations were introduced into candidate genes by a reverse genetics approach. Whole-genome analysis of the 3 selected mutants revealed point mutations in the structural regions of genes encoding subunits of succinate dehydrogenase (complex II). All of the laboratory-generated resistant mutants tested harbored a mutation in one of the subunits of succinate dehydrogenase (SdhB, SdhC, or SdhD). Most of the mutants showed cross-resistance to carboxin and boscalid, which are succinate dehydrogenase inhibitors. ME1111 strongly inhibited the succinate-2,6-dichlorophenolindophenol reductase reaction in Trichophyton rubrum and T. mentagrophytes (50% inhibitory concentrations [IC50s] of 0.029 and 0.025 μg/ml, respectively) but demonstrated only moderate inhibition of the same reaction in human cell lines. Furthermore, the target protein of ME1111 was confirmed by the introduction of point mutations causing the amino acid substitutions in SdhB, SdhC, and SdhD found in the laboratory-generated resistant mutants, which resulted in reduced susceptibility to ME1111. Thus, ME1111 is a novel inhibitor of the succinate dehydrogenase of Trichophyton species, and its mechanism of action indicates its selective profile.
机译:尽管存在针对甲癣的治疗选择,但对有效的局部用药的需求仍然很大。 ME1111是一种新型抗真菌剂,对皮肤真菌具有活性,具有出色的渗透人指甲的能力,并且正在被开发为甲癣的局部用药。在本研究中,我们研究了其作用机理。在我们的实验室中选择了对ME1111敏感性降低的毛癣菌毛状癣菌突变体,并确定了3个抗性突变体的基因组序列。通过使用线粒体级分的分光光度酶测定法评估了对候选目标的抑制作用。通过反向遗传学方法将点突变引入候选基因。对3个选定突变体的全基因组分析表明,在编码琥珀酸脱氢酶亚基(复合体II)的基因的结构区域中存在点突变。测试的所有实验室产生的抗性突变体在琥珀酸脱氢酶的一个亚基(SdhB,SdhC或SdhD)中均具有突变。大多数突变体对作为琥珀酸脱氢酶抑制剂的羧化酶和boscalid具有交叉抗性。 ME1111强烈抑制红毛癣菌和薄荷茶中的琥珀酸2,6-二氯苯酚吲哚还原酶反应(50%抑制浓度[IC50s]分别为0.029和0.025μg/ ml),但在人细胞中仅表现出对同一反应的中度抑制线。此外,通过引入点突变来确认ME1111的靶蛋白,该点突变导致在实验室产生的抗性突变体中发现的SdhB,SdhC和SdhD中的氨基酸取代,从而降低了对ME1111的敏感性。因此,ME1111是毛癣菌属物种的琥珀酸脱氢酶的新型抑制剂,其作用机理表明其选择性。

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