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山梨酸胁迫激活光滑念珠菌高渗甘油 MAP 激酶途径。

Sorbic acid stress activates the Candida glabrata high osmolarity glycerol MAP kinase pathway.

机构信息

Department of Applied Genetics and Cell Biology (DAGZ), University of Natural Resources and Life Sciences Vienna, Austria.

出版信息

Front Microbiol. 2013 Nov 26;4:350. doi: 10.3389/fmicb.2013.00350. eCollection 2013.

Abstract

Weak organic acids such as sorbic acid are important food preservatives and powerful fungistatic agents. These compounds accumulate in the cytosol and disturb the cellular pH and energy homeostasis. Candida glabrata is in many aspects similar to Saccharomyces cerevisiae. However, with regard to confrontation to sorbic acid, two of the principal response pathways behave differently in C. glabrata. In yeast, sorbic acid stress causes activation of many genes via the transcription factors Msn2 and Msn4. The C. glabrata homologs CgMsn2 and CgMsn4 are apparently not activated by sorbic acid. In contrast, in C. glabrata the high osmolarity glycerol (HOG) pathway is activated by sorbic acid. Here we show that the MAP kinase of the HOG pathway, CgHog1, becomes phosphorylated and has a function for weak acid stress resistance. Transcript profiling of weak acid treated C. glabrata cells suggests a broad and very similar response pattern of cells lacking CgHog1 compared to wild type which is over lapping with but distinct from S. cerevisiae. The PDR12 gene was the highest induced gene in both species and it required CgHog1 for full expression. Our results support flexibility of the response cues for general stress signaling pathways, even between closely related yeasts, and functional extension of a specific response pathway.

摘要

弱有机酸,如山梨酸,是重要的食品防腐剂和强有力的抑菌剂。这些化合物在细胞质中积累,扰乱细胞的 pH 值和能量稳态。光滑念珠菌在许多方面与酿酒酵母相似。然而,在对抗山梨酸方面,两种主要的反应途径在光滑念珠菌中表现不同。在酵母中,山梨酸胁迫通过转录因子 Msn2 和 Msn4 激活许多基因。C. glabrata 的同源物 CgMsn2 和 CgMsn4 显然不会被山梨酸激活。相比之下,在 C. glabrata 中,高渗透压甘油(HOG)途径被山梨酸激活。在这里,我们表明 HOG 途径的 MAP 激酶 CgHog1 被磷酸化,并且对弱酸胁迫具有抗性。用弱酸处理 C. glabrata 细胞的转录谱分析表明,缺乏 CgHog1 的细胞与野生型细胞的反应模式广泛且非常相似,与酿酒酵母重叠但又不同。PDR12 基因是两种物种中诱导表达最高的基因,它的完全表达需要 CgHog1。我们的结果支持一般应激信号通路的反应线索的灵活性,即使在密切相关的酵母之间也是如此,以及特定反应通路的功能扩展。

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