Improving Production Of Thermostable And Fluorescent Holo-Beta-Allophycocyanin By Metabolically Engineered Escherichia Coli Using Response Surface Methodology

PREPARATIVE BIOCHEMISTRY & BIOTECHNOLOGY(2015)

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摘要
A stable fluorescent holo-beta-allophycocyanin (holo-ApcB) was produced by metabolically engineered Escherichia coli. The E. coli cells harbored two plasmids for expression of five genes that were involved in the holo-ApcB production. Response surface methodology was employed to investigate the individual and interactive effects of four variables, i.e., initial pH of culture medium, IPTG concentration, post-induction temperature, and induction start time, on holo-ApcB production by E. coli. The experimental results showed that the IPTG concentration, postinduction temperature, and induction start time had significant individual effects on holo-ApcB production. A significant interactive effect was also found between the initial pH of culture and induction start time. The maximum holo-ApcB production of 45.3mg/L was predicted under the following optimized culture conditions: a postinduction temperature of 28.4 degrees C, initial pH of culture of 7.3, IPTG concentration of 1.1mM, and postinduction time of 66min. Holo-ApcB production under the optimized culture conditions increased 5.8-fold, compared with that under the nonoptimized conditions. Response surface methodology proved to be a valuable tool for optimization of holo-ApcB production by metabolically engineered E. coli.
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关键词
holo-beta-allophycocyanin,response surface methodology,fermentation,optimization,fluorescence,Escherichia coli
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