Roberts George G, Hudson Alan P
Department Immunology and Microbiology, Wayne State University School of Medicine, Gordon H. Scott Hall, 540 East Canfield Ave., Detroit, MI 48201, USA.
Mol Genet Genomics. 2006 Aug;276(2):170-86. doi: 10.1007/s00438-006-0133-9. Epub 2006 Jun 2.
Transcriptome analyses using a wild-type strain of Saccharomyces cerevisiae were performed to assess the overall pattern of gene expression during the transition from glucose-based fermentative to glycerol-based respiratory growth. These experiments revealed a complex suite of metabolic and structural changes associated with the adaptation process. Alterations in gene expression leading to remodeling of various membrane transport systems and the cortical actin cytoskeleton were observed. Transition to respiratory growth was accompanied by alterations in transcript patterns demonstrating not only a general stress response, as seen in earlier studies, but also the oxidative and osmotic stress responses. In some contrast to earlier studies, these experiments identified modulation of expression for many genes specifying transcription factors during the transition to glycerol-based growth. Importantly and unexpectedly, an ordered series of changes was seen in transcript levels from genes encoding components of the TFIID, SAGA (Spt-Ada-Gcn5-Acetyltransferase), and SLIK (Saga LIKe) complexes and all three RNA polymerases, suggesting a modulation of structure for the basal transcriptional machinery during adaptation to respiratory growth. In concert with data given in earlier studies, the results presented here highlight important aspects of metabolic and other adaptations to respiratory growth in yeast that are common to utilization of multiple carbon sources. Importantly, they also identify aspects specific to adaptation of this organism to growth on glycerol as sole carbon source.
利用酿酒酵母野生型菌株进行转录组分析,以评估从基于葡萄糖的发酵生长转变为基于甘油的呼吸生长过程中基因表达的总体模式。这些实验揭示了与适应过程相关的一系列复杂的代谢和结构变化。观察到基因表达的改变导致各种膜转运系统和皮质肌动蛋白细胞骨架的重塑。向呼吸生长的转变伴随着转录模式的改变,这不仅显示出如早期研究所见的一般应激反应,还显示出氧化应激和渗透应激反应。与早期研究有些不同的是,这些实验确定了在向基于甘油的生长转变过程中许多指定转录因子的基因表达的调节。重要且出乎意料的是,在编码TFIID、SAGA(Spt-Ada-Gcn5-乙酰转移酶)和SLIK(类似Saga)复合物以及所有三种RNA聚合酶的基因的转录水平上观察到一系列有序的变化,这表明在适应呼吸生长过程中基础转录机制的结构发生了调节。与早期研究给出的数据一致,这里呈现的结果突出了酵母中代谢和其他对呼吸生长的适应的重要方面,这些方面在利用多种碳源时是常见的。重要的是,它们还确定了该生物体适应以甘油作为唯一碳源生长的特定方面。