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缩小与无毒真菌控制之间的差距:羽扇豆衍生的含叶片寡聚物作为对抗人类致病真菌的新型候选物。

Bridging the Gap to Non-toxic Fungal Control: Lupinus-Derived Blad-Containing Oligomer as a Novel Candidate to Combat Human Pathogenic Fungi.

作者信息

Pinheiro Ana M, Carreira Alexandra, Prescott Thomas A K, Ferreira Ricardo B, Monteiro Sara A

机构信息

Linking Landscape, Environment, Agriculture and Food, Instituto Superior de Agronomia, Universidade de LisboaLisboa, Portugal.

CEV, SA, Parque Industrial de Cantanhede/Biocant-ParkCantanhede, Portugal.

出版信息

Front Microbiol. 2017 Jun 28;8:1182. doi: 10.3389/fmicb.2017.01182. eCollection 2017.

Abstract

The lack of antifungal drugs with novel modes of action reaching the clinic is a serious concern. Recently a novel antifungal protein referred to as Blad-containing oligomer (BCO) has received regulatory approval as an agricultural antifungal agent. Interestingly its spectrum of antifungal activity includes human pathogens such as , however, its mode of action has yet to be elucidated. Here we demonstrate that BCO exerts its antifungal activity through inhibition of metal ion homeostasis which results in apoptotic cell death in . HIP HOP profiling in using a panel of signature strains that are characteristic for common modes of action identified hypersensitivity in yeast lacking the iron-dependent transcription factor Aft1 suggesting restricted iron uptake as a mode of action. Furthermore, global transcriptome profiling in also identified disruption of metal ion homeostasis as a potential mode of action. Experiments were carried out to assess the effect of divalent metal ions on the antifungal activity of BCO revealing that BCO activity is antagonized by metal ions such as Mn, Zn, and Fe. The transcriptome profile also implicated sterol synthesis as a possible secondary mode of action which was subsequently confirmed in sterol synthesis assays in . Animal models for toxicity showed that BCO is generally well tolerated and presents a promising safety profile as a topical applied agent. Given its potent broad spectrum antifungal activity and novel multitarget mode of action, we propose BCO as a promising new antifungal agent for the topical treatment of fungal infections.

摘要

缺乏具有新作用模式的抗真菌药物进入临床是一个严重问题。最近,一种称为含叶片寡聚体(BCO)的新型抗真菌蛋白已获得作为农业抗真菌剂的监管批准。有趣的是,其抗真菌活性谱包括人类病原体,如,然而,其作用模式尚未阐明。在这里,我们证明BCO通过抑制金属离子稳态发挥其抗真菌活性,这导致细胞凋亡。在使用一组特征性的标志性菌株进行的HIP HOP分析中,这些菌株代表常见作用模式,结果表明缺乏铁依赖性转录因子Aft1的酵母具有超敏性,提示铁摄取受限是一种作用模式。此外,在中的全局转录组分析也确定金属离子稳态的破坏是一种潜在的作用模式。进行实验以评估二价金属离子对BCO抗真菌活性的影响,结果表明BCO活性受到Mn、Zn和Fe等金属离子的拮抗。转录组谱还表明甾醇合成可能是一种次要作用模式,随后在中的甾醇合成测定中得到证实。毒性动物模型表明,BCO通常耐受性良好,作为局部应用剂具有良好的安全性。鉴于其强大的广谱抗真菌活性和新的多靶点作用模式,我们建议BCO作为一种有前途的新型抗真菌剂用于真菌感染的局部治疗。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/495a/5487463/4e277fd3f993/fmicb-08-01182-g001.jpg

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