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月桂基甜菜碱对皮肤相关真菌的抗真菌作用机制

Antifungal Mechanism of Action of Lauryl Betaine Against Skin-Associated Fungus .

作者信息

Do Eunsoo, Lee Hyun Gee, Park Minji, Cho Yong-Joon, Kim Dong Hyeun, Park Se-Ho, Eun Daekyung, Park Taehun, An Susun, Jung Won Hee

机构信息

Department of Systems Biotechnology, Chung-Ang University, Anseong, Korea.

Safety Research Institute, Amorepacific R&D Center, Yongin, Korea.

出版信息

Mycobiology. 2019 Jun 22;47(2):242-249. doi: 10.1080/12298093.2019.1625175. eCollection 2019.

Abstract

Betaine derivatives are considered major ingredients of shampoos and are commonly used as antistatic and viscosity-increasing agents. Several studies have also suggested that betaine derivatives can be used as antimicrobial agents. However, the antifungal activity and mechanism of action of betaine derivatives have not yet been fully understood. In this study, we investigated the antifungal activity of six betaine derivatives against , which is the most frequently isolated fungus from the human skin and is implicated in the development of dandruff. We found that, among the six betaine derivatives, lauryl betaine showed the most potent antifungal activity. The mechanism of action of lauryl betaine was studied mainly using another phylogenetically close model fungal organism, , because of a lack of available genetic manipulation and functional genomics tools for . Our genome-wide reverse genetic screening method using the gene deletion mutant library showed that the mutants with mutations in genes for cell membrane synthesis and integrity, particularly ergosterol synthesis, are highly sensitive to lauryl betaine. Furthermore, transcriptome changes in both and cells grown in the presence of lauryl betaine were analyzed and the results indicated that the compound mainly affected cell membrane synthesis, particularly ergosterol synthesis. Overall, our data demonstrated that lauryl betaine influences ergosterol synthesis in and that the compound exerts a similar mechanism of action on .

摘要

甜菜碱衍生物被认为是洗发水的主要成分,常用于抗静电和增稠剂。多项研究还表明,甜菜碱衍生物可用作抗菌剂。然而,甜菜碱衍生物的抗真菌活性和作用机制尚未完全明确。在本研究中,我们研究了六种甜菜碱衍生物对马拉色菌的抗真菌活性,马拉色菌是从人皮肤中最常分离出的真菌,与头皮屑的形成有关。我们发现,在六种甜菜碱衍生物中,月桂基甜菜碱表现出最强的抗真菌活性。由于缺乏针对马拉色菌的可用基因操作和功能基因组学工具,月桂基甜菜碱的作用机制主要使用另一种系统发育关系密切的模式真菌酿酒酵母进行研究。我们使用基因缺失突变体文库的全基因组反向遗传筛选方法表明,细胞膜合成和完整性相关基因,特别是麦角固醇合成相关基因突变的突变体对月桂基甜菜碱高度敏感。此外,分析了在月桂基甜菜碱存在下生长的酿酒酵母和马拉色菌细胞的转录组变化,结果表明该化合物主要影响细胞膜合成,特别是麦角固醇合成。总体而言,我们的数据表明月桂基甜菜碱影响马拉色菌中的麦角固醇合成,并且该化合物对酿酒酵母发挥类似的作用机制。

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