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用替代甾醇取代麦角甾醇会影响酵母质膜的生理功能,包括其H - ATP酶活性和对抗真菌药物的抗性。

The replacement of ergosterol with alternative sterols affects the physiological function of the yeast plasma membrane, including its H-ATPase activity and resistance to antifungal drugs.

作者信息

Kodedová Marie, Valachovič Martin, Sychrová Hana

机构信息

Laboratory of Membrane Transport, Institute of Physiology of the Czech Academy of Sciences, Vídeňská 1083, 142 00 Prague 4, Czech Republic.

Department of Membrane Biochemistry, Institute of Animal Biochemistry and Genetics, Centre of Biosciences of the Slovak Academy of Sciences, Dúbravská cesta 9, 840 05 Bratislava, Slovakia.

出版信息

Microbes Infect. 2025 Feb;27(2):105409. doi: 10.1016/j.micinf.2024.105409. Epub 2024 Aug 24.

Abstract

Sterols perform essential structural and signalling functions in living organisms. Ergosterol contributes to the fluidity, permeability, microdomain formation and functionality of proteins in the yeast membrane. In our study, desmosterol was the most successful at compensating for the lack of ergosterol in Saccharomyces cerevisiae, besides stigmasterol and sitosterol. These three sterols supported cell growth without causing severe morphological defects, unlike cholesterol, 7-dehydrocholesterol, lathosterol, cholestanol or lanosterol. Together with ergosterol, they were also able to bring the plasma membrane potential of hem1Δ cells closer to the level of the wild type. In addition, desmosterol conferred even higher thermotolerance to yeast than ergosterol. Some sterols counteracted the antifungal toxicity of polyenes, azoles and terbinafine to hem1Δ cells. Plant sterols (stigmasterol, sitosterol) and desmosterol ensured the glucose-induced activation of H-ATPase in hem1Δ cells analogously to ergosterol, whereas cholesterol and 7-dehydrocholesterol were less effective. Exogenous ergosterol, stigmasterol, sitosterol, desmosterol and cholesterol also improved the growth of Candida glabrata and Candida albicans in the presence of inhibitory concentration of fluconazole. The proper incorporation of exogenous sterols into the membrane with minimal adverse side effects on membrane functions was mainly influenced by the structure of the sterol acyl chain, and less by their ring structures.

摘要

甾醇在生物体中发挥着重要的结构和信号传导功能。麦角固醇有助于酵母细胞膜中蛋白质的流动性、通透性、微区形成及功能。在我们的研究中,除豆甾醇和谷甾醇外,胆甾烯醇在补偿酿酒酵母中麦角固醇缺乏方面最为成功。与胆固醇、7-脱氢胆固醇、羊毛甾醇、胆甾烷醇或羊毛甾醇不同,这三种甾醇支持细胞生长而不会导致严重的形态缺陷。它们与麦角固醇一起,还能够使hem1Δ细胞的质膜电位更接近野生型水平。此外,胆甾烯醇赋予酵母的耐热性甚至高于麦角固醇。一些甾醇可抵消多烯类、唑类和特比萘芬对hem1Δ细胞的抗真菌毒性。植物甾醇(豆甾醇、谷甾醇)和胆甾烯醇与麦角固醇类似,可确保hem1Δ细胞中葡萄糖诱导的H-ATP酶激活,而胆固醇和7-脱氢胆固醇的效果较差。在存在抑制浓度的氟康唑的情况下,外源性麦角固醇、豆甾醇、谷甾醇、胆甾烯醇和胆固醇也能改善光滑念珠菌和白色念珠菌的生长。外源性甾醇以对膜功能产生最小不良副作用的方式正确掺入膜中,这主要受甾醇酰基链结构的影响,而受其环结构的影响较小。

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