Guo Na, Yu Lu, Meng Rizeng, Fan Junwen, Wang Dacheng, Sun Guang, Deng Xuming
College of Animal Science and Veterinary Medicine, Jilin University, Changchun 130062, People's Republic of China.
Yeast. 2008 Sep;25(9):631-41. doi: 10.1002/yea.1614.
Dictamnine, a natural plant product, has been reported to have antimicrobial activity against bacteria and fungi; however, the dictamnine response mechanisms of microorganisms are still poorly understood. We have shown that dictamnine has antimicrobial activities against the model fungus Saccharomyces cerevisiae, with a minimum inhibitory concentration (MIC) value of 64 microg/ml. Commercial oligonucleotide microarrays were used to determine the global transcriptional response of S. cerevisiae triggered by treatment with dictamnine. We interpreted our microarray data using the hierarchical clustering tool, T-profiler. Several major transcriptional responses were induced by dictamnine. The first was the induced environmental stress response, mainly under the control of the Msn2p and Msn4p transcription factors, and the repressed environmental stress response in genes containing the PAC (RNA polymerase A and C box) and rRPE (ribosomal RNA processing element) motifs. The second was the Upc2p-mediated response involved in lipid biosynthesis. The third comprised the PDR3- and RPN4-mediated responses involved in multidrug resistance (MDR). Finally, the TBP-mediated response was induced with dictamnine treatment. TBP is an essential general transcription factor involved in directing the transcription of genes. Quantitative real-time RT-PCR was performed on selected genes to verify the microarray results. Furthermore, morphological transitions during dictamnine exposure to S. cerevisiae L1190 (MATa/alpha) were examined, using confocal laser microscopy.
白鲜碱是一种天然植物产物,据报道具有抗细菌和真菌的抗菌活性;然而,微生物对白鲜碱的反应机制仍知之甚少。我们已经表明,白鲜碱对模式真菌酿酒酵母具有抗菌活性,最低抑菌浓度(MIC)值为64微克/毫升。使用商业寡核苷酸微阵列来确定白鲜碱处理引发的酿酒酵母的全局转录反应。我们使用层次聚类工具T-profiler解释我们的微阵列数据。白鲜碱诱导了几种主要的转录反应。第一种是诱导的环境应激反应,主要受Msn2p和Msn4p转录因子的控制,以及含有PAC(RNA聚合酶A和C框)和rRPE(核糖体RNA加工元件)基序的基因中受抑制的环境应激反应。第二种是Upc2p介导的参与脂质生物合成的反应。第三种包括PDR3和RPN4介导的参与多药耐药性(MDR)的反应。最后,白鲜碱处理诱导了TBP介导的反应。TBP是一种参与指导基因转录的必需通用转录因子。对选定基因进行定量实时RT-PCR以验证微阵列结果。此外,使用共聚焦激光显微镜检查了白鲜碱暴露于酿酒酵母L1190(MATa/α)期间的形态转变。