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pH Signaling in Human Fungal Pathogens: a New Target for Antifungal Strategies

机译:人类真菌病原体中的pH信号:抗真菌策略的新目标。

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Fungi are exposed to broadly fluctuating environmental conditions, to which adaptation is crucial for their survival. An ability to respond to a wide pH range, in particular, allows them to cope with rapid changes in their extracellular settings. PacC/Rim signaling elicits the primary pH response in both model and pathogenic fungi and has been studied in multiple fungal species. In the predominant human pathogenic fungi, namely, Candida albicans, Aspergillus fumigatus, and Cryptococcus neoformans, this pathway is required for many functions associated with pathogenesis and virulence. Aspects of this pathway are fungus specific and do not exist in mammalian cells. In this review, we highlight recent advances in our understanding of PacC/Rim-mediated functions and discuss the growing interest in this cascade and its factors as potential drug targets for antifungal strategies. We focus on both conserved and distinctive features in model and pathogenic fungi, highlighting the specificities of PacC/Rim signaling in C. albicans, A. fumigatus, and C. neoformans. We consider the role of this pathway in fungal virulence, including modulation of the host immune response. Finally, as now recognized for other signaling cascades, we highlight the role of pH in adaptation to antifungal drug pressure. By acting on the PacC/Rim pathway, it may therefore be possible (i) to ensure fungal specificity and to limit the side effects of drugs, (ii) to ensure broad-spectrum efficacy, (iii) to attenuate fungal virulence, (iv) to obtain additive or synergistic effects with existing antifungal drugs through tolerance inhibition, and (v) to slow the emergence of resistant mutants.
机译:真菌暴露于广泛变化的环境条件下,适应环境对其生存至关重要。特别是对宽广的pH范围有反应能力,使他们能够应对细胞外环境的快速变化。 PacC / Rim信号在模型真菌和致病真菌中均引起主要的pH响应,并且已在多种真菌中进行了研究。在主要的人类致病真菌,即白色念珠菌,烟曲霉和新隐球菌中,该途径是许多与发病机理和毒力相关的功能所必需的。该途径的某些方面是真菌特异性的,在哺乳动物细胞中不存在。在这篇综述中,我们重点介绍了我们对PacC / Rim介导的功能的最新进展,并讨论了对这种级联及其作为抗真菌策略潜在药物靶标的因素的兴趣日益增长。我们专注于模型和致病性真菌的保守和独特特征,突出了白色念珠菌,烟曲霉和新孢子虫中PacC / Rim信号的特异性。我们考虑了该途径在真菌毒力中的作用,包括调节宿主免疫反应。最后,正如目前在其他信号传导级联反应中所公认的,我们着重强调了pH在适应抗真菌药压力中的作用。通过作用于PacC / Rim途径,因此有可能(i)确保真菌特异性并限制药物的副作用,(ii)确保广谱功效,(iii)减轻真菌毒性,(iv )通过耐受性抑制与现有的抗真菌药物获得累加或协同作用,并且(v)减慢抗性突变体的出现。

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