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抗真菌植物防御素HsAFP1是一种与磷脂酸相互作用的肽,可诱导膜通透性增加。

The Antifungal Plant Defensin HsAFP1 Is a Phosphatidic Acid-Interacting Peptide Inducing Membrane Permeabilization.

作者信息

Cools Tanne L, Vriens Kim, Struyfs Caroline, Verbandt Sara, Ramada Marcelo H S, Brand Guilherme D, Bloch Carlos, Koch Barbara, Traven Ana, Drijfhout Jan W, Demuyser Liesbeth, Kucharíková Soňa, Van Dijck Patrick, Spasic Dragana, Lammertyn Jeroen, Cammue Bruno P A, Thevissen Karin

机构信息

Centre of Microbial and Plant Genetics, KU Leuven, Leuven, Belgium.

Department of Plant Systems Biology, VIB, Ghent, Belgium.

出版信息

Front Microbiol. 2017 Nov 21;8:2295. doi: 10.3389/fmicb.2017.02295. eCollection 2017.

Abstract

HsAFP1, a plant defensin isolated from coral bells (), is characterized by broad-spectrum antifungal activity. Previous studies indicated that HsAFP1 binds to specific fungal membrane components, which had hitherto not been identified, and induces mitochondrial dysfunction and cell membrane permeabilization. In this study, we show that HsAFP1 reversibly interacts with the membrane phospholipid phosphatidic acid (PA), which is a precursor for the biosynthesis of other phospholipids, and to a lesser extent with various phosphatidyl inositol phosphates (PtdInsP's). Moreover, via reverse ELISA assays we identified two basic amino acids in HsAFP1, namely histidine at position 32 and arginine at position 52, as well as the phosphate group in PA as important features enabling this interaction. Using a HsAFP1 variant, lacking both amino acids (HsAFP1[H32A][R52A]), we showed that, as compared to the native peptide, the ability of this variant to bind to PA and PtdInsP's is reduced (≥74%) and the antifungal activity of the variant is reduced (≥2-fold), highlighting the link between PA/PtdInsP binding and antifungal activity. Using fluorescently labelled HsAFP1 in confocal microscopy and flow cytometry assays, we showed that HsAFP1 accumulates at the cell surface of yeast cells with intact membranes, most notably at the buds and septa. The resulting HsAFP1-induced membrane permeabilization is likely to occur after HsAFP1's internalization. These data provide novel mechanistic insights in the mode of action of the HsAFP1 plant defensin.

摘要

HsAFP1是一种从珊瑚钟花中分离出的植物防御素,具有广谱抗真菌活性。先前的研究表明,HsAFP1与特定的真菌膜成分结合,这些成分迄今尚未确定,并诱导线粒体功能障碍和细胞膜通透性增加。在本研究中,我们发现HsAFP1与膜磷脂磷脂酸(PA)可逆性相互作用,PA是其他磷脂生物合成的前体,并且HsAFP1与各种磷脂酰肌醇磷酸(PtdInsP's)的相互作用较弱。此外,通过反向ELISA分析,我们确定了HsAFP1中的两个碱性氨基酸,即第32位的组氨酸和第52位的精氨酸,以及PA中的磷酸基团是实现这种相互作用的重要特征。使用缺失这两个氨基酸的HsAFP1变体(HsAFP1[H32A][R52A]),我们发现,与天然肽相比,该变体与PA和PtdInsP's结合的能力降低(≥74%),并且该变体的抗真菌活性降低(≥2倍),突出了PA/PtdInsP结合与抗真菌活性之间的联系。在共聚焦显微镜和流式细胞术分析中使用荧光标记的HsAFP1,我们发现HsAFP1在细胞膜完整的酵母细胞表面积累,最明显的是在芽和隔膜处。由此产生的HsAFP1诱导的膜通透性增加可能发生在HsAFP1内化之后。这些数据为HsAFP1植物防御素的作用模式提供了新的机制见解。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/a221/5702387/58a58d39912a/fmicb-08-02295-g001.jpg

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