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植物防御素HsAFP1与卡泊芬净对白色念珠菌生物膜和浮游培养物的协同活性。

Synergistic Activity of the Plant Defensin HsAFP1 and Caspofungin against Candida albicans Biofilms and Planktonic Cultures.

作者信息

Vriens Kim, Cools Tanne L, Harvey Peta J, Craik David J, Spincemaille Pieter, Cassiman David, Braem Annabel, Vleugels Jozef, Nibbering Peter H, Drijfhout Jan Wouter, De Coninck Barbara, Cammue Bruno P A, Thevissen Karin

机构信息

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

Institute for Molecular Bioscience, The University of Queensland, Brisbane, Australia.

出版信息

PLoS One. 2015 Aug 6;10(8):e0132701. doi: 10.1371/journal.pone.0132701. eCollection 2015.

Abstract

Plant defensins are small, cysteine-rich peptides with antifungal activity against a broad range of yeast and fungi. In this study we investigated the antibiofilm activity of a plant defensin from coral bells (Heuchera sanguinea), i.e. HsAFP1. To this end, HsAFP1 was heterologously produced using Pichia pastoris as a host. The recombinant peptide rHsAFP1 showed a similar antifungal activity against the plant pathogen Fusarium culmorum as native HsAFP1 purified from seeds. NMR analysis revealed that rHsAFP1 consists of an α-helix and a triple-stranded antiparallel β-sheet stabilised by four intramolecular disulfide bonds. We found that rHsAFP1 can inhibit growth of the human pathogen Candida albicans as well as prevent C. albicans biofilm formation with a BIC50 (i.e. the minimum rHsAFP1 concentration required to inhibit biofilm formation by 50% as compared to control treatment) of 11.00 ± 1.70 μM. As such, this is the first report of a plant defensin exhibiting inhibitory activity against fungal biofilms. We further analysed the potential of rHsAFP1 to increase the activity of the conventional antimycotics caspofungin and amphotericin B towards C. albicans. Synergistic effects were observed between rHsAFP1 and these compounds against both planktonic C. albicans cells and biofilms. Most notably, concentrations of rHsAFP1 as low as 0.53 μM resulted in a synergistic activity with caspofungin against pre-grown C. albicans biofilms. rHsAFP1 was found non-toxic towards human HepG2 cells up to 40 μM, thereby supporting the lack of a general cytotoxic activity as previously reported for HsAFP1. A structure-function study with 24-mer synthetic peptides spanning the entire HsAFP1 sequence revealed the importance of the γ-core and its adjacent regions for HsAFP1 antibiofilm activity. These findings point towards broad applications of rHsAFP1 and its derivatives in the field of antifungal and antibiofilm drug development.

摘要

植物防御素是一类小分子、富含半胱氨酸的肽,对多种酵母和真菌具有抗真菌活性。在本研究中,我们研究了一种来自珊瑚钟(矾根)的植物防御素即HsAFP1的抗生物膜活性。为此,使用毕赤酵母作为宿主异源生产HsAFP1。重组肽rHsAFP1对植物病原菌禾谷镰刀菌显示出与从种子中纯化的天然HsAFP1相似的抗真菌活性。核磁共振分析表明,rHsAFP1由一个α-螺旋和一个由四个分子内二硫键稳定的三链反平行β-折叠组成。我们发现rHsAFP1可以抑制人类病原菌白色念珠菌的生长,并以11.00±1.70μM的BIC50(即与对照处理相比抑制生物膜形成50%所需的最低rHsAFP1浓度)防止白色念珠菌生物膜的形成。因此,这是关于植物防御素对真菌生物膜具有抑制活性的首次报道。我们进一步分析了rHsAFP1增强传统抗真菌药物卡泊芬净和两性霉素B对白色念珠菌活性的潜力。在rHsAFP1与这些化合物针对浮游白色念珠菌细胞和生物膜的作用中观察到协同效应。最值得注意的是,低至0.53μM的rHsAFP1浓度与卡泊芬净对预先形成的白色念珠菌生物膜具有协同活性。发现rHsAFP1在高达40μM时对人HepG2细胞无毒,从而支持了先前报道的HsAFP1缺乏一般细胞毒性活性的观点。一项对跨越整个HsAFP1序列的24聚体合成肽的结构-功能研究揭示了γ-核心及其相邻区域对HsAFP1抗生物膜活性的重要性。这些发现表明rHsAFP1及其衍生物在抗真菌和抗生物膜药物开发领域具有广泛的应用前景。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/0ec5/4527839/b86c415a6c2f/pone.0132701.g001.jpg

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