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膜鞘脂调节……的适应性和抗真菌蛋白敏感性 。 (注:原文最后“. ”后面似乎缺失了具体内容)

Membrane Sphingolipids Regulate the Fitness and Antifungal Protein Susceptibility of .

作者信息

Huber Anna, Oemer Gregor, Malanovic Nermina, Lohner Karl, Kovács Laura, Salvenmoser Willi, Zschocke Johannes, Keller Markus A, Marx Florentine

机构信息

Division of Molecular Biology, Biocenter, Medical University of Innsbruck, Innsbruck, Austria.

Division of Human Genetics, Medical University of Innsbruck, Innsbruck, Austria.

出版信息

Front Microbiol. 2019 Apr 11;10:605. doi: 10.3389/fmicb.2019.00605. eCollection 2019.

Abstract

The membrane sphingolipid glucosylceramide (GlcCer) plays an important role in fungal fitness and adaptation to most diverse environments. Moreover, reported differences in the structure of GlcCer between fungi, plants and animals render this pathway a promising target for new generation therapeutics. Our knowledge about the GlcCer biosynthesis in fungi is mainly based on investigations of yeasts, whereas this pathway is less well characterized in molds. We therefore performed a detailed lipidomic profiling of GlcCer species present in and comprehensively show that the deletion of genes encoding enzymes involved in GlcCer biosynthesis affects growth, conidiation and stress response in this model fungus. Importantly, our study evidences that differences in the pathway intermediates and their functional role exist between and other fungal species. We further investigated the role of GlcCer in the susceptibility of toward two small cysteine-rich and cationic antimicrobial proteins (AMPs), PAF and PAFB, which originate from the filamentous ascomycete . The interaction of these AMPs with the fungal plasma membrane is crucial for their antifungal toxicity. We found that GlcCer determines the susceptibility of toward PAF, but not PAFB. A higher electrostatic affinity of PAFB than PAF to anionic membrane surfaces might explain the difference in their antifungal mode of action.

摘要

膜鞘脂葡萄糖神经酰胺(GlcCer)在真菌适应性及对多种环境的适应过程中发挥着重要作用。此外,真菌、植物和动物之间GlcCer结构上的差异报道,使得该途径成为新一代治疗药物的一个有前景的靶点。我们对真菌中GlcCer生物合成的了解主要基于对酵母的研究,而在霉菌中该途径的特征尚不明确。因此,我们对存在于[具体名称未给出]中的GlcCer种类进行了详细的脂质组分析,并全面表明,编码参与GlcCer生物合成的酶的基因缺失会影响该模式真菌的生长、分生孢子形成和应激反应。重要的是,我们的研究证明,[具体名称未给出]与其他真菌物种之间在该途径中间体及其功能作用方面存在差异。我们进一步研究了GlcCer在[具体名称未给出]对两种富含半胱氨酸的阳离子抗菌蛋白(AMPs)PAF和PAFB敏感性中的作用,这两种蛋白源自丝状子囊菌[具体名称未给出]。这些AMPs与真菌质膜的相互作用对其抗真菌毒性至关重要。我们发现GlcCer决定了[具体名称未给出]对PAF的敏感性,但对PAFB不敏感。PAFB比PAF对阴离子膜表面具有更高的静电亲和力,这可能解释了它们抗真菌作用方式的差异。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/3875/6471014/e4e592c8198f/fmicb-10-00605-g001.jpg

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