Martínez José L, Bordel Sergio, Hong KuFk-Ki, Nielsen Jens
Department of Chemical and Biological Engineering, Chalmers University of Technology, Gothenburg, Sweden.
FEMS Yeast Res. 2014 Jun;14(4):654-62. doi: 10.1111/1567-1364.12153. Epub 2014 Apr 11.
By performing an integrated comparative analysis on the physiology and transcriptome of four different S. cerevisiae strains growing on galactose and glucose, it was inferred that the transcription factors Bas1p, Pho2p, and Gcn4p play a central role in the regulatory events causing the Crabtree effect in S. cerevisiae. The analysis also revealed that a point mutation in the RAS2 observed in a galactose-adapted strain causes a lower Crabtree effect and growth rate on glucose by decreasing the activity of Gcn4p while at the same time is at the origin of higher growth rate on galactose due to a lower activity of the transcriptional repressor Sok2p. The role of Gcn4p on the trade-off effect observed on glucose was confirmed experimentally. This was done by showing that the point mutation in RAS2 does not result in a lower growth rate on glucose if it is introduced in a GCN4-negative background.
通过对在半乳糖和葡萄糖上生长的四种不同酿酒酵母菌株的生理学和转录组进行综合比较分析,推断转录因子Bas1p、Pho2p和Gcn4p在导致酿酒酵母中Crabtree效应的调控事件中起核心作用。该分析还表明,在适应半乳糖的菌株中观察到的RAS2中的一个点突变,通过降低Gcn4p的活性,导致在葡萄糖上的Crabtree效应和生长速率降低,而与此同时,由于转录抑制因子Sok2p的活性较低,它也是在半乳糖上生长速率较高的原因。Gcn4p对在葡萄糖上观察到的权衡效应的作用通过实验得到了证实。这是通过表明如果将RAS2中的点突变引入GCN4阴性背景中,它不会导致在葡萄糖上的生长速率降低来实现的。