Department of Microbial Biotechnology and Cell Biology, Faculty of Science and Technology, University of Debrecen, Debrecen, Hungary.
Mol Genet Genomics. 2010 Mar;283(3):289-303. doi: 10.1007/s00438-010-0513-z. Epub 2010 Feb 4.
The aim of the study was to demonstrate that the bZIP-type transcription factor AtfA regulates different types of stress responses in Aspergillus nidulans similarly to Atf1, the orthologous 'all-purpose' transcription factor of Schizosaccharomyces pombe. Heterologous expression of atfA in a S. pombe Deltaatf1 mutant restored the osmotic stress tolerance of fission yeast in surface cultures to the same level as recorded in complementation studies with the atf1 gene, and a partial complementation of the osmotic and oxidative-stress-sensitive phenotypes was also achieved in submerged cultures. AtfA is therefore a true functional ortholog of fission yeast's Atf1. As demonstrated by RT-PCR experiments, elements of both oxidative (e.g. catalase B) and osmotic (e.g. glycerol-3-phosphate dehydrogenase B) stress defense systems were transcriptionally regulated by AtfA in a stress-type-specific manner. Deletion of atfA resulted in oxidative-stress-sensitive phenotypes while the high-osmolarity stress sensitivity of the fungus was not affected significantly. In A. nidulans, the glutathione/glutathione disulfide redox status of the cells as well as apoptotic cell death and autolysis seemed to be controlled by regulatory elements other than AtfA. In conclusion, the orchestrations of stress responses in the aspergilli and in fission yeast share several common features, but further studies are needed to answer the important question of whether a fission yeast-like core environmental stress response also operates in the euascomycete genus Aspergillus.
本研究旨在证明 bZIP 型转录因子 AtfA 可调节构巢曲霉中不同类型的应激反应,与酿酒酵母的同源“通用”转录因子 Atf1 相似。在酿酒酵母Δatf1 突变体中异源表达 atfA,可使裂殖酵母在表面培养物中的耐渗透压胁迫能力恢复到与 atf1 基因互补研究中记录的水平,并且在浸没培养物中也实现了渗透压和氧化应激敏感表型的部分互补。因此,AtfA 是裂殖酵母 Atf1 的真正功能同源物。正如 RT-PCR 实验所证明的,氧化(例如过氧化氢酶 B)和渗透压(例如甘油-3-磷酸脱氢酶 B)应激防御系统的元件均以应激类型特异性的方式被 AtfA 转录调控。atfA 缺失导致氧化应激敏感表型,而真菌的高渗透压敏感性未受到显著影响。在构巢曲霉中,细胞的谷胱甘肽/谷胱甘肽二硫化物氧化还原状态以及细胞凋亡和自溶似乎受调控元件控制,而不是 AtfA。总之,曲霉和裂殖酵母中应激反应的协调具有一些共同特征,但需要进一步研究来回答一个重要问题,即类似于裂殖酵母的核心环境应激反应是否也存在于子囊菌属 Aspergillus 中。