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Alkaline stress triggers an immediate calcium fluctuation in Candida albicans mediated by Rim101p and Crz1p transcription factors

机译:碱性胁迫触发由Rim101p和Crz1p转录因子介导的白色念珠菌中钙的即时波动

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摘要

In the human fungal pathogen Candida albicans, environmental pH has profound effects on morphogenesis and response to extracellular pH is clearly relevant to the pathogenicity of this fungus. Yeast cells have evolved a complex network of mechanisms in response to the environmental pH and they often require the integration of the Rim101 and calcineurin/Crz1 signaling pathways. Ca2+ burst is a common cellular response when cells are exposed to environmental stresses; therefore, in this study, we asked whether it follows the same case under alkaline stress and whether this calcium change is regulated by Rim101p and Crz1p. We confirmed the calcium influx was activated by KOH stimuli using a flow cytometry-based method, but it was obviously abolished in cells lacking MID1 or CCH1. We also found that alkaline pH-induced activation of the PHO89 promoter was blocked without the same gene; moreover, the response was Crz1p- and Rim101p-dependent. Finally, we investigated the regulation role of Rim101p and Crz1p in calcium influx through MID1, CCH1 and YVC1 genes, which were all downregulated in rim101 Delta/Delta and crz1 Delta/Delta mutants. The important role of calcium influx in the alkaline stress response and its regulation suggested a potential integration effect of Rim101 and Crz1 signaling pathways in C. albicans.
机译:在人类真菌病原体白色念珠菌中,环境pH对形态发生具有深远的影响,对细胞外pH的响应显然与这种真菌的致病性有关。酵母细胞已经响应环境pH进化了复杂的机制网络,并且它们通常需要Rim101和钙调神经磷酸酶/ Crz1信号通路的整合。当细胞暴露于环境压力下时,Ca2 +爆发是常见的细胞反应。因此,在这项研究中,我们询问在碱性胁迫下是否遵循相同的情况,以及钙的变化是否受Rim101p和Crz1p调节。我们证实使用基于流式细胞仪的方法,通过KOH刺激激活了钙内流,但是在缺乏MID1或CCH1的细胞中钙内流被明显地消除了。我们还发现,在没有相同基因的情况下,碱性pH诱导的PHO89启动子的激活被阻断。此外,响应是Crz1p和Rim101p依赖的。最后,我们研究了Rim101p和Crz1p通过MID1,CCH1和YVC1基因在钙流入中的调节作用,这些基因在rim101 Delta / Delta和crz1 Delta / Delta突变体中均被下调。钙流入在碱性应激反应中的重要作用及其调控表明,白念珠菌中Rim101和Crz1信号通路可能具有整合作用。

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