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大肠杆菌中乙酸盐生成途径的表征

Characterization of the acetate-producing pathways in Escherichia coli.

作者信息

Dittrich Cheryl R, Bennett George N, San Ka-Yiu

机构信息

Departments of Bioengineering, Biochemistry and Cell Biology, Rice University, Houston, TX, USA.

出版信息

Biotechnol Prog. 2005 Jul-Aug;21(4):1062-7. doi: 10.1021/bp050073s.

Abstract

Although the bacterium E. coli is chosen as the host in many bioprocesses, the accumulation of a common byproduct, acetate, is often problematic. Acetate, when present at high levels, will inhibit both cell growth and recombinant protein productivity. In addition, products derived from the central aerobic metabolic pathway often compete with the acetate-producing pathways poxB and ackA-pta for glucose as the substrate. As such, a significant portion of the glucose may be excreted as acetate, wasting substrate that otherwise could have been used for the desired product. We have created mutant E. coli strains with a deletion of either the poxB or the ackA-pta pathway. These two strains, along with the wild-type strain, have been studied in batch reactors over a 12 h time period, at pH 7.0 and 6.0. The wild-type strain has also been studied using glucose as the carbon source. Data were collected to correlate cellular growth, extracellular metabolite production, enzyme activity, and gene expression. Results show that the ackA-pta pathway dominates in exponential phase, and the poxB pathway dominates in stationary phase. The ackA-pta pathway is repressed in acidic environments, whereas the poxB pathway is activated.

摘要

尽管在许多生物过程中选择大肠杆菌作为宿主,但一种常见副产物乙酸盐的积累往往会带来问题。当乙酸盐浓度较高时,它会抑制细胞生长和重组蛋白的生产效率。此外,源自中心需氧代谢途径的产物通常会与产生乙酸盐的途径poxB和ackA-pta竞争葡萄糖作为底物。因此,很大一部分葡萄糖可能会以乙酸盐的形式排出,浪费了原本可用于生产所需产物的底物。我们构建了缺失poxB或ackA-pta途径的大肠杆菌突变株。这两种菌株以及野生型菌株在pH值为7.0和6.0的间歇式反应器中进行了为期12小时的研究。野生型菌株也以葡萄糖作为碳源进行了研究。收集了数据以关联细胞生长、细胞外代谢产物生成、酶活性和基因表达。结果表明,ackA-pta途径在指数期占主导,而poxB途径在稳定期占主导。ackA-pta途径在酸性环境中受到抑制,而poxB途径则被激活。

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