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Manipulation of the carbon storage regulator system for metabolite remodeling and biofuel production in Escherichia coli

机译:操纵碳存储调节器系统以在大肠杆菌中进行代谢物重塑和生物燃料生产

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摘要

BackgroundMicrobial engineering strategies that elicit global metabolic perturbations have the capacity to increase organism robustness for targeted metabolite production. In particular, perturbations to regulators of cellular systems that impact glycolysis and amino acid production while simultaneously decreasing fermentation by-products such as acetate and CO2 make ideal targets. Intriguingly, perturbation of the Carbon Storage Regulator (Csr) system has been previously implicated in large changes in central carbon metabolism in E. coli. Therefore, we hypothesized that perturbation of the Csr system through the CsrA-CsrB ribonucleoprotein complex might increase production of biofuels and their intermediates from heterologous pathways.
机译:背景技术引起全球新陈代谢扰动的微生物工程策略具有增加针对目标代谢物产生的生物稳健性的能力。特别是,对细胞系统调节剂的扰动会影响糖酵解和氨基酸生产,同时减少发酵副产物(如乙酸盐和CO2)成为理想的目标。有趣的是,碳存储调节器(Csr)系统的扰动先前已牵涉到大肠杆菌中中央碳代谢的巨大变化。因此,我们假设通过CsrA-CsrB核糖核蛋白复合物干扰Csr系统可能会增加异源途径产生的生物燃料及其中间体。

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