首页> 外文期刊>Journal of industrial microbiology & biotechnology >Efficient bioconversion of L-glutamate to gamma-aminobutyric acid by Lactobacillus brevis resting cells
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Efficient bioconversion of L-glutamate to gamma-aminobutyric acid by Lactobacillus brevis resting cells

机译:通过Lactobacillus Brevis休息细胞高效L-谷氨酸的生物转化物至γ-氨基丁酸

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摘要

This work investigated the efficient bioconversion process of l-glutamate to GABA by Lactobacillus brevis TCCC 13007 resting cells. The optimal bioconversion system was composed of 50 g/L 48 h cultivated wet resting cells, 0.1 mM pyridoxal phosphate in glutamate-containing 0.6 M citrate buffer (pH 4.5) and performed at 45 A degrees C and 180 rpm. By 10 h bioconversion at the ratio of 80 g/L l-glutamic acid to 240 g/L monosodium glutamate, the final titer of GABA reached 201.18 g/L at the molar bioconversion ratio of 99.4 %. This process presents a potential for industrial and commercial applications and also offers a promising feasibility of continuous GABA production coupled with fermentation. Besides, the built kinetics model revealed that the optimum operating conditions were 45 A degrees C and pH 4.5, and the bioconversion kinetics at low ranges of substrate concentration (0 S 80 g/L) was assumed to follow the classical Michaelis-Menten equation.
机译:该作品研究了L-谷氨酸的有效生物转化过程,通过乳酸杆菌TCCC 13007静态细胞对GABA进行了高效。 最佳的生物转化系统由50g / L 48h培养的湿静静克细胞组成,含有0.1mM吡酰胺磷酸盐的谷氨酸盐0.6μm柠檬酸盐缓冲液(pH 4.5),并以45℃和180rpm进行。 通过80g / l-l-谷氨酸的比例为10小时的生物转化至240g / l谷氨酸的240g / L单钠,GABA的最终滴度达到201.18g / L以99.4%的摩尔生物转离比率。 该过程提出了工业和商业应用的潜力,并且还提供了连续GABA生产与发酵的有希望的可行性。 此外,内置的动力学模型显示,最佳操作条件为45℃和pH 4.5,并且假设底物浓度低范围(0& 80克/升)的生物转化动力学遵循古典迈克莱斯 - 门程。

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