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Reduction of aerobic acetate production by Escherichia coli.

机译:减少大肠杆菌产生的好氧乙酸盐。

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Acetate excretion by Escherichia coli during aerobic growth on glucose is a major obstacle to enhanced recombinant protein production. We report here that the fraction of carbon flux through the anaplerotic pathways is one of the factors influencing acetate excretion. Flux analysis of E. coli central metabolic pathways predicts that increasing the fraction of carbon flux through the phosphoenolpyruvate carboxylase (PPC) pathway and the glyoxylate bypass reduces acetate production. We tested this prediction by overexpressing PPC and deregulating the glyoxylate bypass by using a fadR strain. Results show that the acetate yield by the fadR strain with PPC overexpression is decreased more than fourfold compared to the control, while the biomass yield is relatively unaffected. Apparently, the fraction of carbon flux through the anaplerotic pathways is one of the factors that influence acetate excretion. These results confirm the prediction of our flux analysis and further suggest that E. coli is not fully optimized for efficient utilization of glucose.
机译:葡萄糖有氧生长期间大肠杆菌分泌的乙酸盐是增加重组蛋白产量的主要障碍。我们在这里报告说通过碳通量通路的碳通量的分数是影响乙酸排泄的因素之一。大肠杆菌中枢代谢途径的通量分析预测,通过磷酸烯醇丙酮酸羧化酶(PPC)途径和乙醛酸旁路的碳通量增加会降低乙酸盐的产生。我们通过过度表达PPC并使用fadR菌株放松乙醛酸旁路来测试这一预测。结果显示,与对照相比,具有PPC过表达的fadR菌株的乙酸收率降低了四倍以上,而生物量的收率相对不受影响。显然,通过动脉粥样硬化途径的碳通量分数是影响乙酸盐排泄的因素之一。这些结果证实了我们对通量分析的预测,并进一步表明大肠杆菌并未针对葡萄糖的有效利用进行充分优化。

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