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Role of the Hog1 Stress-activated Protein Kinase in the Global Transcriptional Response to Stress in the Fungal Pathogen Candida albicans

机译:Hog1应力激活蛋白激酶在真菌病原体念珠菌白色念珠菌的全球转录响应中的作用。

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摘要

The resistance of Candida albicans to many stresses is dependent on the stress-activated protein kinase (SAPK) Hog1. Hence we have explored the role of Hog1 in the regulation of transcriptional responses to stress. DNA microarrays were used to characterize the global transcriptional responses of HOG1 and hog1 cells to three stress conditions that activate the Hog1 SAPK: osmotic stress, oxidative stress, and heavy metal stress. This revealed both stress-specific transcriptional responses and a core transcriptional response to stress in C. albicans. The core transcriptional response was characterized by a subset of genes that responded in a stereotypical manner to all of the stresses analyzed. Inactivation of HOG1 significantly attenuated transcriptional responses to osmotic and heavy metal stresses, but not to oxidative stress, and this was reflected in the role of Hog1 in the regulation of C. albicans core stress genes. Instead, the Cap1 transcription factor plays a key role in the oxidative stress regulation of C. albicans core stress genes. Our data show that the SAPK network in C. albicans has diverged from corresponding networks in model yeasts and that the C. albicans SAPK pathway functions in parallel with other pathways to regulate the core transcriptional response to stress.
机译:白色念珠菌对许多压力的抗性取决于压力激活的蛋白激酶(SAPK)Hog1。因此,我们探讨了Hog1在调控应激转录反应中的作用。 DNA微阵列用于表征HOG1和hog1细胞对激活Hog1 SAPK的三种胁迫条件的总体转录反应:渗透胁迫,氧化胁迫和重金属胁迫。这揭示了白色念珠菌的应激特异性转录反应和对应激的核心转录反应。核心转录反应的特征在于以定型方式对所有分析的应激作出反应的基因子集。 HOG1的失活显着减弱了对渗透胁迫和重金属胁迫的转录反应,但对氧化胁迫没有减弱,这反映在Hog1在白色念珠菌核心胁迫基因调控中的作用。相反,Cap1转录因子在白色念珠菌核心应激基因的氧化应激调节中起关键作用。我们的数据表明,白色念珠菌中的SAPK网络与模型酵母中的相应网络有所不同,白色念珠菌SAPK途径与其他途径平行发挥作用,以调节对应激的核心转录反应。

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