Herwig C, Doerries C, Marison I, von Stockar U
Laboratory of Chemical and Biochemical Engineering, Swiss Federal Institute of Technology (EPFL), CH-1015 Lausanne, Switzerland.
Biotechnol Bioeng. 2001 Nov;76(3):247-58. doi: 10.1002/bit.10004.
In Saccharomyces cerevisiae, the expression of invertase, which is the hydrolyzing enzyme of sucrose, is controlled by the presence of monosaccharides, such as glucose and fructose, and referred to as carbon catabolite repression. To date, efforts have been made to identify the mechanism by which cells sense extracellular monosaccharide concentrations and trigger the genes involved in the repression pathway. The aim of the present work was to quantitatively investigate the cellular regulation of invertase expression in the wild-type strain S. cerevisiae CEN.PK113-7D during batch growth containing mixed sugar substrates under different initial conditions. Because of the high frequency and accurate online analysis of multiple components, a tight control of invertase expression could be observed, and threshold concentrations of the monosaccharides for derepression could be determined to 0.5 gl(-1) for glucose and 2 gl(-1) for fructose. Also, the existence of a hitherto undescribed regulatory state, in which cells regulate invertase expression very precisely and operate over long periods at monosaccharide concentrations lower than the above thresholds, could be demonstrated. All experimental observations could be summarized in a formulation of the cellular regulation scheme of invertase expression. A simple kinetic model could show that the regulation scheme explains the observed behavior very well. Additionally, the model was able to explain consequences of the regulation on the global metabolism.
在酿酒酵母中,蔗糖水解酶转化酶的表达受单糖(如葡萄糖和果糖)的存在控制,这被称为碳源分解代谢物阻遏。迄今为止,人们一直在努力确定细胞感知细胞外单糖浓度并触发参与阻遏途径的基因的机制。本研究的目的是定量研究野生型酿酒酵母CEN.PK113 - 7D在不同初始条件下含混合糖底物的分批培养过程中转化酶表达的细胞调控。由于能够对多种成分进行高频且准确的在线分析,因此可以观察到转化酶表达受到严格控制,并且可以确定葡萄糖去阻遏的单糖阈值浓度为0.5 g l⁻¹,果糖为2 g l⁻¹。此外,还可以证明存在一种迄今未描述的调控状态,即细胞非常精确地调节转化酶表达,并在低于上述阈值的单糖浓度下长期运行。所有实验观察结果都可以总结在转化酶表达的细胞调控方案中。一个简单的动力学模型可以表明,该调控方案能够很好地解释观察到的行为。此外,该模型还能够解释该调控对全局代谢的影响。