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Mathematical modeling and optimization of plasmid-harboring and chromosome-integrated recombinant yeast culture processes

机译:含有质粒和染色体整合的重组酵母培养过程的数学建模和优化

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For the enhanced secretion of foreign proteins, the mathematical modeling for overall recombinant yeast culture considering protein secretion dynamics is important because we can understand and predict the behavior of biosynthesis and secretion of foreign protein and can develop control strategies for feeding with these model equations. In this research, the mathematical modeling and simulation considering protein secretion dynamics for recombinant yeast cultures that contain multicopy plasmids or chromosomally integrated genes were performed for optimization of foreign glucoamylase production. The optimal feeding policy for maximizing glucoamylase production was suggested in fed-batch culture. By introducing this optimal feeding policy, final glucoamylase activity and productivity of fedbatch culture were significantly increased compared with those of batch culture in both recombinant yeasts.
机译:对于外源蛋白分泌的增强,考虑蛋白分泌动力学的整体重组酵母培养的数学建模非常重要,因为我们可以理解和预测外源蛋白的生物合成和分泌行为,并可以利用这些模型方程开发饲喂的控制策略。在这项研究中,对含有多拷贝质粒或染色体整合基因的重组酵母培养物进行了考虑蛋白质分泌动力学的数学建模和模拟,以优化外源葡萄糖淀粉酶的产生。在补料分批培养中提出了最大化葡萄糖淀粉酶产量的最佳饲喂策略。通过引入这种最佳饲喂策略,与分批培养相比,两种重组酵母的最终葡萄糖淀粉酶活性和生产率均显著提高。

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