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白色念珠菌的转录谱分析揭示了对细胞外pH的新适应性反应以及Rim101p的功能。

Transcriptional profiling in Candida albicans reveals new adaptive responses to extracellular pH and functions for Rim101p.

作者信息

Bensen Eric S, Martin Samuel J, Li Mingchun, Berman Judith, Davis Dana A

机构信息

Department of Genetics and Cell Development, University of Minnesota, MN 55455, USA.

出版信息

Mol Microbiol. 2004 Dec;54(5):1335-51. doi: 10.1111/j.1365-2958.2004.04350.x.

Abstract

The human pathogen Candida albicans grows and colonizes sites that can vary markedly in pH. The pH response in C. albicans is governed in part by the Rim101p pathway. In Saccharomyces cerevisiae, Rim101p promotes alkaline responses by repressing expression of NRG1, itself a transcriptional repressor. Our studies reveal that in C. albicans, Rim101p-mediated alkaline adaptation is not through repression of CaNRG1. Furthermore, our studies suggest that Rim101p and Nrg1p act in parallel pathways to regulate hyphal morphogenesis, an important contributor to virulence. To determine the wild-type C. albicans transcriptional response to acidic and alkaline pH, we utilized microarrays and identified 514 pH-responsive genes. Of these, several genes involved in iron acquisition were upregulated at pH 8, suggesting that alkaline pH induces iron starvation. Microarray analysis of rim101-/- cells indicated that Rim101p does not govern transcriptional responses at acidic pH, but does regulate a subset of transcriptional responses at alkaline pH, including the iron acquisition genes. We found that rim101-/- cells are sensitive to iron starvation, which suggests that one important aspect of the Rim101p-dependent alkaline pH response is to adapt to iron starvation conditions.

摘要

人类病原体白色念珠菌可在pH值差异显著的部位生长和定殖。白色念珠菌的pH反应部分受Rim101p途径调控。在酿酒酵母中,Rim101p通过抑制自身作为转录抑制因子的NRG1的表达来促进碱性反应。我们的研究表明,在白色念珠菌中,Rim101p介导的碱性适应并非通过抑制CaNRG1。此外,我们的研究表明,Rim101p和Nrg1p在平行途径中发挥作用,以调节菌丝形态发生,而菌丝形态发生是毒力的一个重要因素。为了确定野生型白色念珠菌对酸性和碱性pH的转录反应,我们利用微阵列技术鉴定了514个pH反应基因。其中,几个参与铁摄取的基因在pH 8时上调,这表明碱性pH会诱导铁饥饿。对rim101-/-细胞的微阵列分析表明,Rim101p在酸性pH下不调控转录反应,但在碱性pH下确实调控一部分转录反应,包括铁摄取基因。我们发现rim101-/-细胞对铁饥饿敏感,这表明Rim101p依赖的碱性pH反应的一个重要方面是适应铁饥饿条件。

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