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Membrane lipid-modulated mechanism of action and non-cytotoxicity of novel fungicide aminoglycoside FG08

机译:新型杀菌剂氨基糖苷FG08的膜脂质调节作用机制和非细胞毒性

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摘要

A novel aminoglycoside, FG08, that differs from kanamycin B only by a C8 alkyl chain at the 4″-O position, was previously reported. Unlike kanamycin B, FG08 shows broad-spectrum fungicidal but not anti-bacterial activities. To understand its specificity for fungi, the mechanism of action of FG08 was studied using intact cells of the yeast Saccharomyces cerevisiae and small unilamellar membrane vesicles. With exposure to FG08 (30 µg mL−1), 8-fold more cells were stained with fluorescein isothiocyanate, cells had 4 to 6-fold higher K+ efflux rates, and 18-fold more cells were stained with SYTOX Green in comparison to exposure to kanamycin B (30 µg mL−1). Yeast mutants with aberrant membrane sphingolipids (no sphingoid base C4 hydroxyl group, truncated very long fatty acid chain, or lacking the terminal phosphorylinositol group of mannosyl-diinositolphosphorylphytoceramide were 4 to 8-fold less susceptible to growth inhibition with FG08 and showed 2 to 10-fold lower SYTOX Green dye uptake rates than did the isogenic wild-type strain. FG08 caused leakage of pre-loaded calcein from 50% of small unilamellar vesicles with glycerophospholipid and sterol compositions that mimic the compositions of fungal plasma membranes. Less than 5 and 10% of vesicles with glycerophospholipid and sterol compositions that mimic bacterial and mammalian cell plasma membranes, respectively, showed calcein leakage. In tetrazolium dye cytotoxicity tests, mammalian cell lines NIH3T3 and C8161.9 showed FG08 toxicity at concentrations that were 10 to 20-fold higher than fungicidal minimal inhibitory concentrations. It is concluded that FG08’s growth inhibitory specificity for fungi lie in plasma membrane permeability changes involving mechanisms that are modulated by membrane lipid composition.
机译:先前报道了一种新颖的氨基糖苷FG08,其与卡那霉素B的区别仅在于4''-O位置的C8烷基链。与卡那霉素B不同,FG08显示广谱杀真菌活性,但没有抗菌活性。为了了解其对真菌的特异性,使用了酿酒酵母完整细胞和小的单层膜囊泡研究了FG08的作用机理。与FG08(30 µg mL-1)接触时,与异硫氰酸荧光素相比,细胞多染色了8倍,K +外排率高了4至6倍,而SYTOX Green对细胞的染色则多了18倍。卡那霉素B(30 µg mL-1)。具有异常的膜鞘脂(无鞘脂碱基C4羟基,截短的很长的脂肪酸链或缺少甘露糖基-二肌醇磷酸植物神经酰胺的末端磷酸肌醇基团的酵母突变体)对FG08的生长抑制敏感性降低了4至8倍,并显示2至10- SYTOX Green染料的吸收率比同基因野生型菌株低三倍; FG08导致预先装载的钙黄绿素从50%的单层小囊泡中泄漏,这些小囊泡具有模拟磷脂质膜组成的甘油磷脂和甾醇组成,分别小于5和10。分别模拟细菌和哺乳动物细胞质膜的具有甘油磷脂和固醇成分的囊泡中的%显示钙黄绿素泄漏;在四唑鎓染料细胞毒性试验中,哺乳动物细胞系NIH3T3和C8161.9在浓度高10至20倍时显示FG08毒性比杀菌剂的最低抑菌浓度得出结论。真菌的有效性在于质膜的通透性变化,该变化涉及由膜脂质组成调节的机制。

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