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环磷酸腺苷途径激活和细胞外锌诱导细胞内锌快速动员

Cyclic AMP Pathway Activation and Extracellular Zinc Induce Rapid Intracellular Zinc Mobilization in .

作者信息

Kjellerup Lasse, Winther Anne-Marie L, Wilson Duncan, Fuglsang Anja T

机构信息

Department of Plant and Environmental Sciences, University of Copenhagen, Frederiksberg, Denmark.

Pcovery ApS, Copenhagen, Denmark.

出版信息

Front Microbiol. 2018 Mar 21;9:502. doi: 10.3389/fmicb.2018.00502. eCollection 2018.

Abstract

Zinc is an essential micronutrient, required for a range of zinc-dependent enzymes and transcription factors. In mammalian cells, zinc serves as a second messenger molecule. However, a role for zinc in signaling has not yet been established in the fungal kingdom. Here, we used the intracellular zinc reporter, zinbo-5, which allowed visualization of zinc in the endoplasmic reticulum and other components of the internal membrane system in . We provide evidence for a link between cyclic AMP/PKA- and zinc-signaling in this major human fungal pathogen. Glucose stimulation, which triggers a cyclic AMP spike in this fungus resulted in rapid intracellular zinc mobilization and this "zinc flux" could be stimulated with phosphodiesterase inhibitors and blocked via inhibition of adenylate cyclase or PKA. A similar mobilization of intracellular zinc was generated by stimulation of cells with extracellular zinc and this effect could be reversed with the chelator EDTA. However, zinc-induced zinc flux was found to be cyclic AMP independent. In summary, we show that activation of the cyclic AMP/PKA pathway triggers intracellular zinc mobilization in a fungus. To our knowledge, this is the first described link between cyclic AMP signaling and zinc homeostasis in a human fungal pathogen.

摘要

锌是一种必需的微量营养素,多种依赖锌的酶和转录因子都需要它。在哺乳动物细胞中,锌充当第二信使分子。然而,锌在信号传导中的作用在真菌界尚未得到证实。在此,我们使用了细胞内锌报告基因zinbo-5,它能够使内质网及其他内膜系统组分中的锌可视化。我们为这种主要的人类真菌病原体中环状AMP/蛋白激酶A信号传导与锌信号传导之间的联系提供了证据。葡萄糖刺激会引发该真菌中环状AMP峰值,导致细胞内锌迅速动员,这种“锌通量”可被磷酸二酯酶抑制剂刺激,并可通过抑制腺苷酸环化酶或蛋白激酶A来阻断。用细胞外锌刺激细胞也会产生类似的细胞内锌动员,这种效应可用螯合剂乙二胺四乙酸(EDTA)逆转。然而,发现锌诱导的锌通量不依赖于环状AMP。总之,我们表明环状AMP/蛋白激酶A途径的激活会引发真菌中的细胞内锌动员。据我们所知,这是首次在人类真菌病原体中描述环状AMP信号传导与锌稳态之间的联系。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/39c2/5871664/ab983e9dda05/fmicb-09-00502-g001.jpg

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