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酿酒酵母的能量代谢:ATP平衡与已知代谢功能之间的差异

Energy metabolism of Saccharomyces cerevisiae discrepancy between ATP balance and known metabolic functions.

作者信息

Lagunas R

出版信息

Biochim Biophys Acta. 1976 Sep 13;440(3):661-74. doi: 10.1016/0005-2728(76)90049-9.

Abstract

The contribution of metabolic pathways to the catabolism of glucose, galactose and ethanol by Saccharomyces cerevisiae in aerobiosis has been studied. The results suggest that: 1. Of the total ATP formed in catabolism yeast obtain as much as 60% from ethylic fermentation during logarithmic growth on glucose. However, about 80% of ATP is formed in oxidation of galactose. Oxidation seems to be the only important catabolic pathway of ethanol. 2. The ratios between growth yield and ATP formed in catabolism were approx. 9, 7 and 3 g dry yeast/mol ATP in glucose, galactose and ethanol cultures, respectively. 3. The balance between ATP produced in catabolism of substrates and the requirements of ATP for the biosynthesis of cellular material indicates that as much as 60% of ATP is spent in functions other than net biosynthesis. 4. The rate of ATP expenditure in non net-biosynthetic functions during growth was approx. 20 mmol/g dry yeast per h. 5. In conditions in which no growth occurred but cell viability was maintained, that is, in the absence of exogenous carbon and nitrogen source, the ATP production rate was approx. 1 mmol ATP/g dry yeast per h. 6. These results indicate that the ATP required for maintaining the yeast alive, what would be considered maintenance energy "sensu stricto", is only a minor proportion of the ATP spent in non net-biosynthetic functions during growth. The identification of the processes related to growth which spend more energy than that required for net biosynthesis could lead to important insights in cell biology.

摘要

研究了酿酒酵母在需氧条件下代谢途径对葡萄糖、半乳糖和乙醇分解代谢的贡献。结果表明:1. 在葡萄糖对数生长期的分解代谢中,酵母产生的总ATP中有多达60%来自乙醇发酵。然而,在半乳糖氧化过程中约80%的ATP得以形成。氧化似乎是乙醇唯一重要的分解代谢途径。2. 在葡萄糖、半乳糖和乙醇培养物中,生长产量与分解代谢中形成的ATP的比率分别约为9、7和3克干酵母/摩尔ATP。3. 底物分解代谢产生的ATP与细胞物质生物合成所需的ATP之间的平衡表明,多达60%的ATP用于净生物合成以外的功能。4. 生长过程中非净生物合成功能的ATP消耗速率约为每小时20毫摩尔/克干酵母。5. 在不发生生长但维持细胞活力的条件下,即在没有外源碳源和氮源的情况下,ATP产生速率约为每小时1毫摩尔ATP/克干酵母。6. 这些结果表明,维持酵母存活所需的ATP,即所谓的“狭义维持能量”,只是生长过程中非净生物合成功能所消耗ATP的一小部分。确定与生长相关的、消耗能量多于净生物合成所需能量的过程,可能会为细胞生物学带来重要见解。

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