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咖啡因对酿酒酵母中葡萄糖诱导的糖异生酶失活的影响。环磷酸腺苷的可能作用。

Effect of caffeine on glucose-induced inactivation of gluconeogenetic enzymes in Saccharomyces cerevisiae. A possible role of cyclic AMP.

作者信息

Tortora P, Burlini N, Hanozet G M, Guerritore A

出版信息

Eur J Biochem. 1982 Sep 1;126(3):617-22. doi: 10.1111/j.1432-1033.1982.tb06825.x.

Abstract

The mechanism of catabolite inactivation of three gluconeogenetic enzymes, fructose-1,6-bisphosphatase, cytoplasmic malate dehydrogenase and phosphoenolpyruvate carboxykinase, has been studied in the yeast Saccharomyces cerevisiae. The glucose-induced inactivation of the three enzymes is remarkably retarded by preincubation of the cells with different caffeine concentrations; however, a full conservation of activity has never been obtained, even at the highest drug concentration. Caffeine modifies the metabolic effects produced in the yeast cell by exposure to glucose. It reduces the consumption rate of glucose; changes the glycolytic intermediate pattern, giving rise to a crossover point at the level of the phosphofructokinase/fructose-bisphosphatase cycle; and increases the ATP level and the energy charge. Moreover, it substantially reduces the peak of intracellular cAMP content that immediately follows glucose entry; the magnitude of this effect is dependent on the drug concentration. The effect on the change of intracellular cAMP level appears, among all metabolic effects determined by caffeine, the only plausible one to explain the interference with catabolite inactivation of enzymes. Actually a strong negative correlation between residual activity of each of the three investigated enzymes and intracellular cAMP level has been demonstrated. The existence of a common mechanism of action of cAMP, as the mediating factor for catabolite inactivation of all three enzymes, is proposed.

摘要

在酿酒酵母中研究了三种糖异生酶(果糖-1,6-二磷酸酶、细胞质苹果酸脱氢酶和磷酸烯醇式丙酮酸羧激酶)分解代谢失活的机制。用不同浓度的咖啡因对细胞进行预孵育,可显著延缓葡萄糖诱导的这三种酶的失活;然而,即使在最高药物浓度下,也从未实现活性的完全保留。咖啡因改变了酵母细胞因接触葡萄糖而产生的代谢效应。它降低了葡萄糖的消耗速率;改变了糖酵解中间产物模式,在磷酸果糖激酶/果糖二磷酸酶循环水平产生了一个交叉点;并提高了ATP水平和能荷。此外,它还显著降低了葡萄糖进入后紧接着出现的细胞内cAMP含量峰值;这种效应的大小取决于药物浓度。在咖啡因所决定的所有代谢效应中,对细胞内cAMP水平变化的影响似乎是唯一能合理解释其对酶分解代谢失活干扰的因素。实际上,已经证明所研究的三种酶中每一种的残余活性与细胞内cAMP水平之间存在很强的负相关。有人提出,存在一种共同的cAMP作用机制,作为所有三种酶分解代谢失活的介导因子。

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