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酿酒酵母在好氧恒化器培养中能量代谢振荡的一种潜在机制。

A potential mechanism of energy-metabolism oscillation in an aerobic chemostat culture of the yeast Saccharomyces cerevisiae.

作者信息

Xu Zhaojun, Tsurugi Kunio

机构信息

Department of Biochemistry 2, University of Yamanashi, Faculty of Medicine, Tamaho, Japan.

出版信息

FEBS J. 2006 Apr;273(8):1696-709. doi: 10.1111/j.1742-4658.2006.05201.x.

Abstract

The energy-metabolism oscillation in aerobic chemostat cultures of yeast is a periodic change of the respiro-fermentative and respiratory phase. In the respiro-fermentative phase, the NADH level was kept high and respiration was suppressed, and glucose was anabolized into trehalose and glycogen at a rate comparable to that of catabolism. On the transition to the respiratory phase, cAMP levels increased triggering the breakdown of storage carbohydrates and the increased influx of glucose into the glycolytic pathway activated production of glycerol and ethanol consuming NADH. The resulting increase in the NAD(+)/NADH ratio stimulated respiration in combination with a decrease in the level of ATP, which was consumed mainly in the formation of biomass accompanying budding, and the accumulated ethanol and glycerol were gradually degraded by respiration via NAD(+)-dependent oxidation to acetate and the respiratory phase ceased after the recovery of NADH and ATP levels. However, the mRNA levels of both synthetic and degradative enzymes of storage carbohydrates were increased around the early respiro-fermentative phase, when storage carbohydrates are being synthesized, suggesting that the synthetic enzymes were expressed directly as active forms while the degradative enzymes were activated late by cAMP. In summary, the energy-metabolism oscillation is basically regulated by a feedback loop of oxido-reductive reactions of energy metabolism mediated by metabolites like NADH and ATP, and is modulated by metabolism of storage carbohydrates in combination of post-translational and transcriptional regulation of the related enzymes. A potential mechanism of energy-metabolism oscillation is proposed.

摘要

酵母好氧恒化器培养中的能量代谢振荡是呼吸发酵阶段和呼吸阶段的周期性变化。在呼吸发酵阶段,NADH水平保持较高,呼吸作用受到抑制,葡萄糖以与分解代谢相当的速率合成海藻糖和糖原。在向呼吸阶段转变时,cAMP水平升高,触发储存碳水化合物的分解以及葡萄糖向糖酵解途径的流入增加,激活了消耗NADH的甘油和乙醇的产生。NAD(+)/NADH比值的升高与ATP水平的降低共同刺激呼吸作用,ATP主要消耗于伴随出芽的生物量形成过程中,积累的乙醇和甘油通过依赖NAD(+)的氧化作用经呼吸作用逐渐降解为乙酸盐,在NADH和ATP水平恢复后呼吸阶段停止。然而,在呼吸发酵早期阶段左右,当储存碳水化合物正在合成时,储存碳水化合物合成酶和降解酶的mRNA水平均升高,这表明合成酶直接以活性形式表达,而降解酶则在后期被cAMP激活。总之,能量代谢振荡基本上由NADH和ATP等代谢物介导的能量代谢氧化还原反应的反馈回路调节,并通过储存碳水化合物的代谢以及相关酶的翻译后和转录调节相结合进行调节。提出了能量代谢振荡的潜在机制。

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