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线粒体膜超极化是植物防御素Ppdef1抗真菌机制的关键组成部分。

Hyperpolarisation of Mitochondrial Membranes Is a Critical Component of the Antifungal Mechanism of the Plant Defensin, Ppdef1.

作者信息

Parisi Kathy, McKenna James A, Lowe Rohan, Harris Karen S, Shafee Thomas, Guarino Rosemary, Lee Eunice, van der Weerden Nicole L, Bleackley Mark R, Anderson Marilyn A

机构信息

La Trobe Institute for Molecular Science, La Trobe University, Melbourne 3086, Australia.

Hexima Ltd., Preston 3072, Australia.

出版信息

J Fungi (Basel). 2024 Jan 7;10(1):54. doi: 10.3390/jof10010054.

Abstract

Plant defensins are a large family of small cationic proteins with diverse functions and mechanisms of action, most of which assert antifungal activity against a broad spectrum of fungi. The partial mechanism of action has been resolved for a small number of members of plant defensins, and studies have revealed that many act by more than one mechanism. The plant defensin Ppdef1 has a unique sequence and long loop 5 with fungicidal activity against a range of human fungal pathogens, but little is known about its mechanism of action. We screened the non-essential gene deletion library and identified the involvement of the mitochondria in the mechanism of action of Ppdef1. Further analysis revealed that the hyperpolarisation of the mitochondrial membrane potential (MMP) activates ROS production, vacuolar fusion and cell death and is an important step in the mechanism of action of Ppdef1, and it is likely that a similar mechanism acts in .

摘要

植物防御素是一类具有多种功能和作用机制的小阳离子蛋白大家族,其中大多数对多种真菌具有抗真菌活性。少数植物防御素成员的部分作用机制已得到解析,研究表明许多防御素通过多种机制发挥作用。植物防御素Ppdef1具有独特的序列和长环5,对多种人类真菌病原体具有杀真菌活性,但其作用机制尚不清楚。我们筛选了非必需基因缺失文库,并确定线粒体参与了Ppdef1的作用机制。进一步分析表明,线粒体膜电位(MMP)的超极化激活了活性氧的产生、液泡融合和细胞死亡,这是Ppdef1作用机制中的重要一步,并且可能在……中存在类似的机制。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/e22c/10817573/a94bef73f232/jof-10-00054-g001.jpg

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