The effects of tyrosol on yeasts: an overview of current knowledge

IF 4.3 3区 生物学 Q2 BIOTECHNOLOGY & APPLIED MICROBIOLOGY
Renátó Kovács, Ágnes Jakab
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引用次数: 0

Abstract

Quorum sensing is a cell density-dependent microbial communication form, which can regulate several microbial properties, including virulence, biofilm formation and cell–cell competence. The phenomenon of fungal quorum sensing was first uncovered nearly 25 years ago, following the identification of farnesol and tyrosol as two key signalling molecules. Although the major roles of these regulatory molecules were elucidated, several questions primarily regarding tyrosol-mediated effects remain to be addressed, particularly with regard to molecular events influenced by tyrosol. Based on available literature data, tyrosol possesses potential antifungal activity, especially at supraphysiological concentrations. Moreover, its simultaneous usage with traditional antifungals shows potent synergistic activity against planktonic and sessile Candida cells, including both Candida albicans and certain non-albicans species. Currently, the deep molecular tyrosol-based investigations are still in their infancy compared with farnesol research. However, several promising findings were published in the past 10 years in terms of the potential usage of this compound as an alternative therapeutic treatment. Hence, this mini review summarizes the major functions of tyrosol as a signaling regulator compound in Candida morphogenesis. Furthermore, we discussed the most promising tyrosol-based in vitro data, which may be a foundation for the future development of in vivo models and ultimately innovative therapeutic strategies against fungal infections.

• Tyrosol is a major quorum-sensing molecule in Candida species, promoting yeast-to-hyphae transition and biofilm formation

• Tyrosol has been shown to potentiate the efficacy of conventional antifungal agents, representing a promising adjunctive strategy for the treatment of fungal biofilms

• At supraphysiological concentrations, tyrosol induces oxidative stress, negatively influences the intracellular metal homeostasis and alters the fungal metabolism

酪醇对酵母的作用:当前知识综述
群体感应是一种依赖于细胞密度的微生物通讯形式,它可以调节多种微生物特性,包括毒力、生物膜形成和细胞-细胞能力。真菌群体感应现象在近25年前首次被发现,当时鉴定出法尼醇和酪醇是两个关键的信号分子。虽然这些调节分子的主要作用已被阐明,但仍有几个主要关于酪醇介导效应的问题有待解决,特别是关于酪醇影响的分子事件。根据现有的文献资料,酪醇具有潜在的抗真菌活性,特别是在超生理浓度下。此外,它与传统抗真菌药同时使用显示出对浮游和固定式念珠菌细胞(包括白色念珠菌和某些非白色念珠菌)的有效协同作用。目前,与法尼醇相比,基于酪醇的深层分子研究还处于起步阶段。然而,在过去的10年里,关于这种化合物作为一种替代治疗方法的潜在用途,发表了一些有希望的发现。因此,本文就酪醇作为一种信号调节化合物在念珠菌形态发生中的主要作用进行综述。此外,我们讨论了最有希望的基于tyrosol的体外数据,这可能是未来发展体内模型和最终创新治疗真菌感染策略的基础。•Tyrosol是念珠菌中主要的群体感应分子,促进酵母到菌丝的转化和生物膜的形成•Tyrosol已被证明可以增强传统抗真菌药物的疗效,代表了一种有希望的治疗真菌生物膜的辅助策略•在超生理浓度下,Tyrosol诱导氧化应激,对细胞内金属稳态产生负面影响并改变真菌代谢
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来源期刊
Applied Microbiology and Biotechnology
Applied Microbiology and Biotechnology 工程技术-生物工程与应用微生物
CiteScore
10.00
自引率
4.00%
发文量
535
审稿时长
2 months
期刊介绍: Applied Microbiology and Biotechnology focusses on prokaryotic or eukaryotic cells, relevant enzymes and proteins; applied genetics and molecular biotechnology; genomics and proteomics; applied microbial and cell physiology; environmental biotechnology; process and products and more. The journal welcomes full-length papers and mini-reviews of new and emerging products, processes and technologies.
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