Key Laboratory of Environment Correlative Dietology, Ministry of Education, College of Food Science and Technology, Huazhong Agricultural University, Wuhan, P.R. China.
Key Laboratory of Environment Correlative Dietology, Ministry of Education, College of Food Science and Technology, Huazhong Agricultural University, Wuhan, P.R. China.
Adv Appl Microbiol. 2023;124:31-53. doi: 10.1016/bs.aambs.2023.07.001. Epub 2023 Jul 28.
Pathogenic fungi are widespread and cause a variety of diseases in human beings and other organisms. At present, limited classes of antifungal agents are available to treat invasive fungal diseases. With the wide use of the commercial antifungal agents, drug resistance of pathogenic fungi are continuously increasing. Therefore, exploring effective antifungal agents with novel drug targets is urgently needed to cope with the challenges that the antifungal area faces. pH homeostasis is vital for multiple cellular processes, revealing the potential for defining novel drug targets. Fungi have evolved a number of strategies to maintain a stable pH internal environment in response to rapid metabolism and a dramatically changing extracellular environment. Among them, plasma membrane H-ATPase (PMA) and vacuolar H-ATPase (V-ATPase) play a central role in the regulation of pH homeostasis system. In this chapter, we will summarize the current knowledge about pH homeostasis and its regulation mechanisms in pathogenic fungi, especially for the recent advances in PMA and V-ATPase, which would help in revealing the regulating mechanism of pH on cell growth and pathogenicity, and further designing effective drugs and identify new targets for combating fungal diseases.
致病真菌广泛存在,并导致人类和其他生物体的多种疾病。目前,可用于治疗侵袭性真菌感染的抗真菌药物种类有限。随着商业抗真菌药物的广泛使用,致病真菌的耐药性不断增加。因此,迫切需要探索具有新型药物靶点的有效抗真菌药物,以应对抗真菌领域面临的挑战。
pH 稳态对多种细胞过程至关重要,这为确定新的药物靶点提供了可能性。真菌已经进化出许多策略来维持稳定的 pH 内部环境,以应对快速代谢和急剧变化的细胞外环境。其中,质膜 H+-ATP 酶(PMA)和液泡 H+-ATP 酶(V-ATPase)在 pH 稳态系统的调节中起核心作用。在本章中,我们将总结有关致病真菌 pH 稳态及其调节机制的最新知识,特别是关于 PMA 和 V-ATPase 的最新进展,这将有助于揭示 pH 对细胞生长和致病性的调节机制,并进一步设计有效的药物和识别治疗真菌病的新靶点。