Screening a 681-membered yeast collection for the secretion of proteins with antifungal activity

IF 4.9 2区 生物学 Q1 BIOCHEMICAL RESEARCH METHODS New biotechnology Pub Date : 2025-05-25 Epub Date: 2025-01-26 DOI:10.1016/j.nbt.2025.01.008
Alicia Maciá Valero , Fatemehalsadat Tabatabaeifar , Sonja Billerbeck
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Abstract

Fungal pathogens pose a threat to human health and food security. Few antifungals are available and resistance to all has been reported. Novel strategies to control plant and human pathogens as well as food spoilers are urgently required. Environmental yeasts provide a functionally diverse, yet underexploited potential for fungal control based on their natural competition via the secretion of proteins and other small molecules such as iron chelators, volatile organic compounds or biosurfactants. However, there is a lack of standardized workflows to systematically access application-relevant yeast-based compounds and understand their molecular functioning. Towards this goal, we developed a workflow to identify and characterize yeast isolates that are active against spoilage yeasts and relevant human and plant pathogens, herein focusing on discovering yeasts that secrete antifungal proteins. The workflow includes the classification of the secreted molecules and cross-comparison of their antifungal capacity using an independent synthetic calibrant. Our workflow delivered a collection of 681 yeasts of which 212 isolates (31 %) displayed antagonism against at least one target strain. While 57.5 % of the active yeasts showed iron-depended antagonism, likely due to pulcherrimin-like iron chelators, 31.7 % secreted antifungal proteins. Those yeast candidates clustered within twelve OTUs, showed narrow and broad target spectra, and several showed a broad pH and temperature activity profile. Given the tools for yeast biotechnology and protein engineering available, our collection can serve as a rich starting point for genetic and molecular characterization of the various antifungal phenotypes, their mode of action and their future exploitation.
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筛选681个成员酵母菌群分泌具有抗真菌活性的蛋白质。
真菌病原体对人类健康和粮食安全构成威胁。目前可用的抗真菌药很少,所有抗真菌药都有耐药性的报道。迫切需要新的策略来控制植物和人类病原体以及食物破坏者。环境酵母通过分泌蛋白质和其他小分子,如铁螯合剂、挥发性有机化合物或生物表面活性剂,为真菌控制提供了功能多样但尚未开发的潜力。然而,缺乏标准化的工作流程来系统地获取与应用相关的酵母基化合物并了解其分子功能。为了实现这一目标,我们开发了一套工作流程来鉴定和表征对腐败酵母和相关人类和植物病原体有活性的酵母菌分离物,在此重点发现分泌抗真菌蛋白的酵母菌。工作流程包括对分泌分子进行分类,并使用独立的合成校准剂对其抗真菌能力进行交叉比较。我们的工作流程收集了681株酵母,其中212株(31%)对至少一种目标菌株表现出拮抗作用。而57.5%的活性酵母菌表现出铁依赖性拮抗,可能是由于pulcherrimin样铁螯合剂,31.7%的活性酵母菌分泌抗真菌蛋白。这些候选酵母聚集在12个otu内,显示出窄和宽的目标光谱,其中一些显示出广泛的pH和温度活性谱。鉴于酵母生物技术和蛋白质工程工具的可用性,我们的收集可以作为各种抗真菌表型,其作用模式和未来开发的遗传和分子特征的丰富起点。
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来源期刊
New biotechnology
New biotechnology 生物-生化研究方法
CiteScore
11.40
自引率
1.90%
发文量
77
审稿时长
1 months
期刊介绍: New Biotechnology is the official journal of the European Federation of Biotechnology (EFB) and is published bimonthly. It covers both the science of biotechnology and its surrounding political, business and financial milieu. The journal publishes peer-reviewed basic research papers, authoritative reviews, feature articles and opinions in all areas of biotechnology. It reflects the full diversity of current biotechnology science, particularly those advances in research and practice that open opportunities for exploitation of knowledge, commercially or otherwise, together with news, discussion and comment on broader issues of general interest and concern. The outlook is fully international. The scope of the journal includes the research, industrial and commercial aspects of biotechnology, in areas such as: Healthcare and Pharmaceuticals; Food and Agriculture; Biofuels; Genetic Engineering and Molecular Biology; Genomics and Synthetic Biology; Nanotechnology; Environment and Biodiversity; Biocatalysis; Bioremediation; Process engineering.
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