State Key Laboratory of Materials-Oriented Chemical Engineering, Nanjing, 210009, People's Republic of China.
Appl Microbiol Biotechnol. 2010 Jun;87(2):517-25. doi: 10.1007/s00253-010-2536-0. Epub 2010 Mar 23.
To develop an economical industrial medium, untreated cane molasses (UCM) was tested as a carbon source for fermentation culturing of Escherichia coli. To test the industrial application of this medium, we chose a strain co-expressing a carbonyl reductase (PsCR) and a glucose dehydrogenase (BmGDH). Although corn steep liquor (CSL) could be used as an inexpensive nitrogen source to replace peptone, yeast extract could not be replaced in E. coli media. In a volume of 40 ml per 1-l flask, a cell concentration of optical density (OD(600)) 15.1 and enzyme activities of 6.51 U/ml PsCR and 3.32 U/ml BmGDH were obtained in an optimized medium containing 25.66 g/l yeast extract, 3.88 g/l UCM, and 7.1% (v/v) CSL. When 3.88 g/l UCM was added to the medium at 6 h in a fed-batch process, the E. coli concentration increased to OD(600) of 24, and expression of both PsCR and BmGDH were twofold higher than that of a batch process. Recombinant cells from batch or fed-batch cultures were assayed for recombinant enzyme activity by testing the reduction of ethyl 4-chloro-3-oxobutanoate to ethyl (S)-4-chloro-3-hydroxybutanoate (CHBE). Compared to cells from batch cultures, fed-batch cultured cells showed higher recombinant enzyme expression, producing 560 mM CHBE in the organic phase with a molar yield of 92% and an optical purity of the (S)-isomer of >99% enantiomeric excess.
为了开发经济的工业培养基,我们测试了未经处理的甘蔗糖蜜(UCM)作为发酵培养大肠杆菌的碳源。为了测试该培养基的工业应用,我们选择了一株共表达羰基还原酶(PsCR)和葡萄糖脱氢酶(BmGDH)的菌株。虽然玉米浆(CSL)可以作为廉价的氮源替代蛋白胨,但酵母提取物不能替代大肠杆菌培养基中的成分。在 1 升摇瓶中装液量为 40ml 的条件下,优化培养基中含有 25.66g/L 酵母提取物、3.88g/L UCM 和 7.1%(v/v)CSL,细胞浓度达到 OD(600)15.1,酶活分别为 6.51U/ml PsCR 和 3.32U/ml BmGDH。在补料分批过程中,在 6 小时时向培养基中添加 3.88g/L UCM,大肠杆菌浓度增加到 OD(600)为 24,与分批过程相比,PsCR 和 BmGDH 的表达均提高了两倍。通过测试乙基 4-氯-3-氧代丁酸酯还原为乙基(S)-4-氯-3-羟基丁酸酯(CHBE)来检测分批或补料分批培养物中的重组细胞的重组酶活性。与分批培养的细胞相比,补料分批培养的细胞表现出更高的重组酶表达,在有机相中产生 560mM 的 CHBE,摩尔产率为 92%,(S)-异构体的光学纯度大于 99%对映过量。