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磷酸甘油酸变位酶敲除突变体酿酒酵母:生理学研究与转录组分析。

Phosphoglycerate mutase knock-out mutant Saccharomyces cerevisiae: physiological investigation and transcriptome analysis.

机构信息

Systems Biology, Chemical and Biological Engineering Department, Chalmers University of Technology, Kemigården, Göteborg, Sweden.

出版信息

Biotechnol J. 2010 Oct;5(10):1016-27. doi: 10.1002/biot.201000199.

Abstract

The yeast Saccharomyces cerevisiae is able to adapt its metabolism to grow on different carbon sources and to shift to non-fermentative growth on C2 or C3 carbon sources (ethanol, acetate, or glycerol) through the activation of gluconeogenesis. Here, we studied the response to the deletion of the glycolytic and gluconeogenic gene GPM1, encoding for phosphoglycerate mutase. It was previously shown that a S. cerevisiae strain with non-functional copies of GPM1 can only grow when glycerol and ethanol are both present as carbon sources, whilst addition of glucose was shown to strongly inhibit growth. It was suggested that glycerol is needed to feed gluconeogenesis whilst ethanol is required for respiration. Here, we studied the physiological response of the GPM1 knock-out mutant through fermentation and transcriptome analysis. Furthermore, we compared the physiological results with those obtained through simulations using a genome-scale metabolic model, showing that glycerol is only needed in small amounts for growth. Our findings strongly suggest a severely impaired growth ability of the knock-out mutant, which presents increased transcript levels of genes involved in the pentose phosphate pathway and in the glyoxylate shunt. These results indicate an attempt to compensate for the energy imbalance caused by the deletion of the glycolytic/gluconeogenic gene within the mutant.

摘要

酵母酿酒酵母能够通过糖异生的激活来适应不同碳源的生长,并在 C2 或 C3 碳源(乙醇、醋酸盐或甘油)上转向非发酵生长。在这里,我们研究了对糖酵解和糖异生基因 GPM1 缺失的反应,该基因编码磷酸甘油酸变位酶。以前的研究表明,当甘油和乙醇都作为碳源存在时,具有非功能性 GPM1 拷贝的酿酒酵母菌株才能生长,而葡萄糖的添加被证明会强烈抑制生长。有人认为甘油需要为糖异生提供养分,而乙醇则需要用于呼吸。在这里,我们通过发酵和转录组分析研究了 GPM1 敲除突变体的生理反应。此外,我们将生理结果与使用基因组规模代谢模型获得的模拟结果进行了比较,结果表明甘油只需要少量就能生长。我们的研究结果强烈表明,敲除突变体的生长能力严重受损,涉及戊糖磷酸途径和乙醛酸支路的基因的转录水平增加。这些结果表明,突变体中糖酵解/糖异生基因的缺失导致能量失衡,细胞试图对此进行补偿。

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