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脂质组分析表明,抗真菌多酚姜黄素会影响膜脂稳态。

Lipidome analysis reveals antifungal polyphenol curcumin affects membrane lipid homeostasis.

作者信息

Sharma Monika, Dhamgaye Sanjiveeni, Singh Ashutosh, Prasad Rajendra

机构信息

Membrane Biology Laboratory, School of Life Sciences, Jawaharlal Nehru University, New Delhi-110067, India.

出版信息

Front Biosci (Elite Ed). 2012 Jan 1;4(4):1195-209. doi: 10.2741/451.

Abstract

This study shows that antifungal curcumin (CUR), significantly depletes ergosterol levels in Candida albicans. CUR while displaying synergy with fluconazole (FLC) lowers ergosterol. However, CUR alone at its synergistic concentration (lower than MIC50), could not affect ergosterol contents. For deeper insight of CUR effects on lipids, we performed high throughput mass spectroscopy (MS) based lipid profiling of C. albicans cells. The lipidome analysis revealed that there were no major changes in phosphoglycerides (PGLs) composition following CUR treatment of Candida, however, significant differences in molecular species of PGLs were detected. Among major SPLs, CUR treatment resulted in the reduction of ceramide and accumulation of IPCs levels. The lipidome of CUR treated cells confirmed a dramatic drop in the ergosterol levels with a simultaneous accumulation of its biosynthetic precursors. This was further supported by the fact that the mutants defective in ergosterol biosynthesis (ERG2 and ERG11) and those lacking the transcription factor regulating ergosterol biosynthesis, UPC2, were highly susceptible to CUR. Our study first time shows that CUR, for its antifungal activity, targets and down regulates delta 5, 6 desaturase (ERG3) resulting in depletion of ergosterol. This results in parallel accumulation of ergosterol biosynthetic precursors, generation of reactive oxygen species (ROS) and cell death.

摘要

本研究表明,抗真菌剂姜黄素(CUR)可显著降低白色念珠菌中的麦角固醇水平。CUR在与氟康唑(FLC)协同作用时可降低麦角固醇水平。然而,单独使用CUR在其协同浓度(低于MIC50)时,不会影响麦角固醇含量。为了更深入了解CUR对脂质的影响,我们对白色念珠菌细胞进行了基于高通量质谱(MS)的脂质谱分析。脂质组分析显示,用CUR处理念珠菌后,磷酸甘油酯(PGLs)组成没有重大变化,然而,检测到PGLs分子种类存在显著差异。在主要的鞘脂类(SPLs)中,CUR处理导致神经酰胺减少和肌醇磷脂酰胆碱(IPCs)水平积累。经CUR处理的细胞脂质组证实麦角固醇水平急剧下降,同时其生物合成前体积累。麦角固醇生物合成缺陷的突变体(ERG2和ERG11)以及缺乏调节麦角固醇生物合成的转录因子UPC2的突变体对CUR高度敏感,这一事实进一步支持了上述结果。我们的研究首次表明,CUR的抗真菌活性靶向并下调Δ5,6去饱和酶(ERG3),导致麦角固醇耗竭。这导致麦角固醇生物合成前体平行积累、活性氧(ROS)生成和细胞死亡。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/75c9/3607078/2da50f714271/nihms442679f1.jpg

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