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大肠杆菌发酵中的醋酸生成。

Acetic acid formation in Escherichia coli fermentation.

机构信息

Biochemical Engineering Program, University of California, Irvine, California 92717, USA.

出版信息

Biotechnol Bioeng. 1992 Mar 15;39(6):663-71. doi: 10.1002/bit.260390611.

Abstract

Acetic acid formation in Escherichia coli fermentation has been studied in continuous cultures. Experimental results suggest that the limited capacity of the oxidative metabolism (perhaps the limited capacity of TCA cycle) may be responsible for acetic acid formation. At low growth rates, both anabolic and catabolic requirements may be satisfied by the oxidative metabolism. However, at high growth rates these two demands may exceed the capacity of the oxidative metabolism alone. It is proposed that under these circumstances, E. coli reorganizes the oxidative metabolism to first meet the anabolic requisition and then supply the necessary amount of energy using both the remaining capacity of the oxidative metabolism and acetic acid formation metabolism. Escherichia coli selects acetic acid synthesis as the aerobic energy source because it generates the second largest amount of ATP and NADH(2). According to our proposition, acetic acid formation could be reduced by decreasing the anabolic requirement, i.e., reducing glucose uptake, or by increasing the capacity of the oxidative metabolism. These two approaches were experimentally confirmed by observing reduced acetic acid formation by reducing the glucose uptake with a yeast extract addition and enhancing the capacity of oxidative metabolism with a methionine addition.

摘要

已在连续培养物中研究了大肠杆菌发酵中的乙酸形成。实验结果表明,氧化代谢的有限能力(也许是 TCA 循环的有限能力)可能是乙酸形成的原因。在低生长速率下,合成代谢和分解代谢的需求都可以通过氧化代谢来满足。然而,在高生长速率下,这两个需求可能超过氧化代谢的单独能力。据提议,在这些情况下,大肠杆菌会重新组织氧化代谢,首先满足合成代谢的要求,然后利用氧化代谢的剩余能力和乙酸形成代谢来提供必要的能量。大肠杆菌选择乙酸合成作为有氧能量来源,因为它生成第二大量的 ATP 和 NADH(2)。根据我们的提议,通过减少合成代谢的需求(即减少葡萄糖摄取)或通过增加氧化代谢的能力,可以减少乙酸的形成。通过添加酵母提取物来减少葡萄糖摄取以及通过添加蛋氨酸来增强氧化代谢的能力,这两种方法在实验中得到了证实。

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