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将毒素捕获在脂滴内是真菌的一种抗性机制。

Trapping toxins within lipid droplets is a resistance mechanism in fungi.

作者信息

Chang Wenqiang, Zhang Ming, Zheng Sha, Li Ying, Li Xiaobin, Li Wei, Li Gang, Lin Zhaomin, Xie Zhiyu, Zhao Zuntian, Lou Hongxiang

机构信息

Department of Natural Product Chemistry, Key Lab of Chemical Biology of Ministry of Education, Shandong University, No. 44 West Wenhua Road, Jinan City, Shandong Province, China.

College of Life Sciences, Shandong Normal University, No. 88 East Wenhua Road, Jinan City, Shandong Province, China.

出版信息

Sci Rep. 2015 Oct 14;5:15133. doi: 10.1038/srep15133.

Abstract

Lipid droplets (LDs) act as intracellular storage organelles in most types of cells and are principally involved in energy homeostasis and lipid metabolism. However, the role of LDs in resistance to toxins in fungi remains largely unknown. Here, we show that the trapping of endogenous toxins by LDs is a self-resistance mechanism in the toxin producer, while absorbing external lipophilic toxins is a resistance mechanism in the toxin recipient that acts to quench the production of reactive oxygen species. We found that an endolichenic fungus that generates phototoxic perylenequinones (PQs) trapped the PQs inside LDs. Using a model that incorporates the fungicidal action of hypocrellin A (HA), a PQ derivative, we showed that yeast cells escaped killing by trapping toxins inside LDs. Furthermore, LD-deficient mutants were hypersusceptible to HA-mediated phototoxins and other fungicides. Our study identified a previously unrecognised function of LDs in fungi that has implications for our understanding of environmental adaptation strategies for fungi and antifungal drug discovery.

摘要

脂滴(LDs)在大多数类型的细胞中作为细胞内储存细胞器,主要参与能量稳态和脂质代谢。然而,脂滴在真菌抗毒素中的作用在很大程度上仍不清楚。在此,我们表明脂滴捕获内源性毒素是毒素产生者的一种自我抵抗机制,而吸收外部亲脂性毒素是毒素接受者的一种抵抗机制,其作用是淬灭活性氧的产生。我们发现,一种产生光毒性苝醌(PQs)的内生真菌将PQs捕获在脂滴内。使用一个包含PQ衍生物竹红菌甲素(HA)杀菌作用的模型,我们表明酵母细胞通过将毒素捕获在脂滴内而避免被杀死。此外,缺乏脂滴的突变体对HA介导的光毒素和其他杀菌剂高度敏感。我们的研究确定了脂滴在真菌中一种以前未被认识的功能,这对于我们理解真菌的环境适应策略和抗真菌药物发现具有重要意义。

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