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首页> 外文期刊>Antimicrobial agents and chemotherapy. >E1210, a new broad-spectrum antifungal, suppresses Candida albicans hyphal growth through inhibition of glycosylphosphatidylinositol biosynthesis
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E1210, a new broad-spectrum antifungal, suppresses Candida albicans hyphal growth through inhibition of glycosylphosphatidylinositol biosynthesis

机译:新型广谱抗真菌药物E1210通过抑制糖基磷脂酰肌醇生物合成来抑制白色念珠菌菌丝生长

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摘要

Continued research toward the development of new antifungals that act via inhibition of glycosylphosphatidylinositol (GPI) biosynthesis led to the design of E1210. In this study, we assessed the selectivity of the inhibitory activity of E1210 against Candida albicans GWT1 (Orf19.6884) protein, Aspergillus fumigatus GWT1 (AFUA-1G14870) protein, and human PIG-W protein, which can catalyze the inositol acylation of GPI early in the GPI biosynthesis pathway, and then we assessed the effects of E1210 on key C. albicans virulence factors. E1210 inhibited the inositol acylation activity of C. albicans Gwt1p and A. fumigatus Gwt1p with 50% inhibitory concentrations (IC 50s) of 0.3 to 0.6 μM but had no inhibitory activity against human Pig-Wp even at concentrations as high as 100 μM. To confirm the inhibition of fungal GPI biosynthesis, expression of ALS1 protein, a GPI-anchored protein, on the surfaces of C. albicans cells treated with E1210 was studied and shown to be significantly lower than that on untreated cells. However, the ALS1 protein levels in the crude extract and the RHO1 protein levels on the cell surface were found to be almost the same. Furthermore, E1210 inhibited germ tube formation, adherence to polystyrene surfaces, and biofilm formation of C. albicans at concentrations above its MIC. These results suggested that E1210 selectively inhibited inositol acylation of fungus-specific GPI which would be catalyzed by Gwt1p, leading to the inhibition of GPI-anchored protein maturation, and also that E1210 suppressed the expression of some important virulence factors of C. albicans, through its GPI biosynthesis inhibition.
机译:继续研究开发通过抑制糖基磷脂酰肌醇(GPI)生物合成起作用的新型抗真菌剂,从而设计了E1210。在这项研究中,我们评估了E1210对白色念珠菌GWT1(Orf19.6884)蛋白,烟曲霉GWT1(AFUA-1G14870)蛋白和人PIG-W蛋白的抑制活性的选择性,这些蛋白可以催化GPI的肌醇酰化在GPI生物合成途径的早期,然后我们评估了E1210对关键白色念珠菌毒力因子的影响。 E1210在50%的抑制浓度(IC 50s)为0.3至0.6μM的情况下抑制了白色念珠菌Gwt1p和烟曲霉Gwt1p的肌醇酰化活性,但即使在浓度高达100μM时也没有抑制人Pig-Wp的活性。为了证实对真菌GPI生物合成的抑制作用,研究了用E1210处理的白色念珠菌细胞表面ALS1蛋白(一种GPI锚定的蛋白)的表达,发现其显着低于未经处理的细胞。但是,发现粗提物中的ALS1蛋白水平与细胞表面的RHO1蛋白水平几乎相同。此外,E1210在高于其MIC的浓度下也能抑制白色念珠菌的胚芽管形成,对聚苯乙烯表面的粘附和生物膜形成。这些结果表明,E1210通过Gwt1p选择性抑制真菌特异性GPI的肌醇酰化,从而抑制了GPI锚定的蛋白质成熟,并且E1210通过抑制白念珠菌某些重要毒力因子的表达。其GPI生物合成抑制作用。

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