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Overproduction of human interleukin-2 in recombinant Escherichia coli BL21 high-cell-density culture by the determination and optimization of essential amino acids using a simple stoichiometric model

机译:通过使用简单的化学计量模型确定和优化必需氨基酸,在重组大肠杆菌BL21高细胞密度培养物中过量生产人白细胞介素2

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In order to increase the productivity of human IL-2 (interleukin-2), a stoichiometric model has been used to determine the most essential amino acids and precise values of their amounts to be added to the culture during expression of human IL-2 (as a model protein) by recombinant Escherichia coli BL21 (pET21a-hil2). Experiments were performed to investigate the effect of chosen amino acids and their interactions on expression of human IL-2. Glutamine, a mixture of leucine, aspartic acid and glycine, and a mixture of leucine, glutamine and aspartic acid, were the most effective for the expression of IL-2. The most promising amino acids were then chosen for further experiments at three different levels to determine whether altering their stoichiometry can lead to better expression levels. The optimized value of glutamine in the flask was 0.316 g/l; a mixture of leucine, glutamine and aspartic acid at concentrations of 0.124, 0.316 and 0.212 g/l respectively and of leucine, aspartic acid and glycine in concentrations of 0.124, 0.212, 0.111 g/l respectively were chosen to be added to the flask. The effect of glutamine, as one of the amino acids most influencing the expression of IL-2 in batch and fed-batch high-cell-density cultures, was studied. The results revealed that the amount of expressed IL-2 compared with the control culture increased from 81 to 195 mg/l in the shake flask, 403 to 594 mg/l in the fermentor and 5.15 to 10.01 g/l in the fermentor under fed-batch cultivation.
机译:为了提高人IL-2(白介素2)的生产率,已使用化学计量模型确定最基本的氨基酸及其在人IL-2表达过程中添加到培养物中的精确量值(重组大肠杆菌BL21(pET21a-hil2)作为模型蛋白)。进行实验以研究所选氨基酸及其相互作用对人IL-2表达的影响。谷氨酰胺(亮氨酸,天冬氨酸和甘氨酸的混合物,以及亮氨酸,谷氨酰胺和天冬氨酸的混合物)对IL-2的表达最有效。然后选择最有前途的氨基酸以三种不同的水平用于进一步的实验,以确定改变其化学计量是否可以导致更好的表达水平。烧瓶中谷氨酰胺的最适值为0.316 g / l。分别将浓度分别为0.124、0.316和0.212 g / l的亮氨酸,谷氨酰胺和天冬氨酸的混合物以及浓度分别为0.124、0.212、0.111 g / l的亮氨酸,天冬氨酸和甘氨酸的混合物添加到烧瓶中。研究了谷氨酰胺的影响,谷氨酰胺是最影响分批和补料分批高细胞密度培养物中IL-2表达的氨基酸之一。结果表明,与对照培养物相比,在进料下,摇瓶中IL-2的表达量从81增加到195 mg / l,发酵罐中的表达从403增加到594 mg / l,发酵罐中的表达从5.15增加到10.01 g / l分批种植。

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