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Regulation of copper homeostasis by Cuf1 associates with its subcellular localization in the pathogenic yeast Cryptococcus neoformans H99

机译:Cuf1对铜稳态的调节与其在致病性酵母新隐球菌H99中的亚细胞定位有关

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Here, we present further characterization of cryptococcal CUF1 in copper homeostasis. We demonstrated that CUF1 was involved both in copper acquisition and in copper detoxification in response to copper variation. This was verified by direct measurement of the quantity of intracellular copper with flame atomic absorption spectrometry (FAAS) and molecular evidence. In copper-limited growth, the mutant cuf1 Delta exhibited copper deficiency, growth defect on glycerol and sensitivity to hydrogen peroxide and methionine. A novel function of cryptococcal CUF1 is revealed in copper detoxification when copper is in excess. The mutant cuf1 Delta showed severe hypersensitivity to exogenous copper, while a high level of copper was accumulated shown by FAAS, suggesting that CUF1 may be required in copper export events. On cloning of cDNA, it was found that Cuf1 distinguishably harbors functional elements that are found in Ace1 and Mac1 of Saccharomyces cerevisiae. The regulation of copper homeostasis by Cuf1 is realized by its subcellular localization. Epifluorescence microscopy observed that, upon copper depletion, Cuf1 was localized exclusively to the nucleus as an activator for CTR4 transcription, while it was located to the cell periphery in the presence of exogenous copper. This work reveals a unique copper regulator and may provide insights into the copper metabolism in fungi.
机译:在这里,我们提出铜稳态中隐球菌CUF1的进一步表征。我们证明了CUF1参与了铜的获取和响应铜变异的铜解毒。通过火焰原子吸收光谱法(FAAS)和分子证据直接测量细胞内铜的含量,可以证实这一点。在铜受限的生长中,突变体cuf1 Delta表现出铜缺乏,甘油的生长缺陷以及对过氧化氢和蛋氨酸的敏感性。当铜过量时,铜的解毒作用揭示了隐球菌CUF1的新功能。突变体cuf1 Delta对外源铜表现出严重的超敏性,而FAAS显示积累了高水平的铜,表明在铜出口事件中可能需要CUF1。在cDNA的克隆中,发现Cuf1明显地带有在酿酒酵母的Ace1和Mac1中发现的功能元件。 Cuf1对铜稳态的调节是通过其亚细胞定位来实现的。落射荧光显微镜观察到,铜耗尽后,Cuf1仅作为CTR4转录激活剂定位在细胞核上,而在外源铜存在下位于细胞外围。这项工作揭示了独特的铜调节剂,并可能提供有关真菌中铜代谢的见解。

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