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Effect of Nutrient Starvation on the Cellular Composition and Metabolic Capacity of Saccharomyces cerevisiae

机译:营养饥饿对酿酒酵母细胞组成和代谢能力的影响

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摘要

This investigation addresses the following question: what are the important factors for maintenance of a high catabolic capacity under various starvation conditions? Saccharomyces cerevisiae was cultured in aerobic batch cultures, and during the diauxic shift cells were transferred and subjected to 24 h of starvation. The following conditions were used: carbon starvation, nitrogen starvation in the presence of glucose or ethanol, and both carbon starvation and nitrogen starvation. During the starvation period changes in biomass composition (including protein, carbohydrate, lipid, and nucleic acid contents), metabolic activity, sugar transport kinetics, and the levels of selected enzymes were recorded. Subsequent to the starvation period the remaining catabolic capacity was measured by addition of 50 mM glucose. The results showed that the glucose transport capacity is a key factor for maintenance of high metabolic capacity in many, but not all, cases. The results for cells starved of carbon, carbon and nitrogen, or nitrogen in the presence of glucose all indicated that the metabolic capacity was indeed controlled by the glucose transport ability, perhaps with some influence of hexokinase, phosphofructokinase, aldolase, and enolase levels. However, it was also demonstrated that there was no such correlation when nitrogen starvation occurred in the presence of ethanol instead of glucose.
机译:这项研究解决了以下问题:在各种饥饿条件下维持高分解代谢能力的重要因素是什么?在有氧分批培养中培养酿酒酵母,并在双峰转移过程中转移细胞并使其饥饿24小时。使用以下条件:碳饥饿,在葡萄糖或乙醇存在下的氮饥饿,以及碳饥饿和氮饥饿。在饥饿期间,记录生物量组成(包括蛋白质,碳水化合物,脂质和核酸含量),代谢活性,糖转运动力学和所选酶水平的变化。在饥饿期之后,通过添加50mM葡萄糖来测量剩余的分解代谢能力。结果表明,在许多但不是全部情况下,葡萄糖转运能力是维持高代谢能力的关键因素。在葡萄糖存在下缺乏碳,碳和氮或氮的细胞的结果均表明,代谢能力确实受葡萄糖转运能力的控制,也许受己糖激酶,磷酸果糖激酶,醛缩酶和烯醇化酶水平的影响。但是,还证明了当在乙醇而不是葡萄糖存在下发生氮饥饿时,没有这种相关性。

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