a Research Group Microbial Immunology , Leibniz Institute for Natural Product Research and Infection Biology, Hans Knoell Institute (HKI) , Jena , Germany.
b Septomics Research Center, Friedrich Schiller University and Leibniz Institute for Natural Product Research and Infection Biology - Hans Knoell Institute (HKI) , Jena , Germany.
Crit Rev Microbiol. 2018 Mar;44(2):230-243. doi: 10.1080/1040841X.2017.1337711. Epub 2017 Jun 13.
Candida albicans is a successful colonizer of the human host, which can, under certain circumstances cause a range of clinically diverse infections. Important virulence-associated traits of the fungus, such as the dimorphic switch and biofilm formation, are controlled by the quorum sensing molecule farnesol. Given the potential of farnesol as a novel antifungal drug, there has been increasing research into the mechanism underlying farnesol sensing and action in C. albicans. However, despite the identification of various factors involved in farnesol signalling, its exact mode of action remains largely unclear. This review provides an overview of the currently known aspects of farnesol production, sensing and action within C. albicans. We also illustrate the characteristic of C. albicans to simultaneously produce and tolerate high farnesol concentrations that are lethal to other microbes. Furthermore, we summarize new literature on the role of farnesol in the interaction of C. albicans with the human host and highlight its action as a potent immunomodulatory molecule.
白色念珠菌是人体宿主的成功定植者,在某些情况下会引起一系列临床表现多样的感染。真菌的一些重要毒力相关特征,如二相性转换和生物膜形成,受群体感应分子法尼醇的控制。鉴于法尼醇有作为新型抗真菌药物的潜力,人们对其在白色念珠菌中感应和作用的机制的研究越来越多。然而,尽管已经确定了法尼醇信号转导中涉及的各种因素,但它的确切作用模式在很大程度上仍不清楚。这篇综述概述了目前已知的白色念珠菌中法尼醇的产生、感应和作用的各个方面。我们还说明了白色念珠菌同时产生和耐受高浓度法尼醇的特性,而高浓度法尼醇对其他微生物是致命的。此外,我们总结了关于法尼醇在白色念珠菌与人体宿主相互作用中的作用的新文献,并强调了它作为一种有效的免疫调节分子的作用。