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首页> 外文期刊>Biotechnology and Bioengineering >Metabolic Flux Analysis for Recombinant Protein Production by Pichia pastoris Using Dual Carbon Sources: Effects of Methanol Feeding Rate
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Metabolic Flux Analysis for Recombinant Protein Production by Pichia pastoris Using Dual Carbon Sources: Effects of Methanol Feeding Rate

机译:使用双碳源的巴斯德毕赤酵母重组蛋白生产的代谢通量分析:甲醇进料速率的影响

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摘要

The intracellular metabolic fluxes through the central carbon pathways in the bioprocess for recombinant human erythropoietin (rHuEPO) production by Pichia pastoris (Mut(+)) were calculated. to investigate the metabolic effects of dual carbon sources (methanol/sorbitol) and the methanol feed rate, and to obtain a deeper understanding the regulatory circuitry of P. pastoris, using the established stoichiometry-based model containing 102 metabolites and 141 reaction fluxes. Four fed-batch operations with (MS-) and without (M-) sorbitol were performed three different constant specific growth rates (h(-1)), and denoted as M-0.03, MS-0.02, MS-0.03, and MS-0.04. Considering the methanol consumption pathway, the M-0.03 and MS-0.02 conditions produced similar effects and had >85% of formaldehyde flux towards the assimilatory pathway. In contrast, the use of the dual carbon Source condition generated la shift in metabolism towards the dissimilatory pathway that corre- sponded to the shift in dilution rate from MS-0.03 to MS-0.04 indicating that the methanol feed exceeded the metabolic requirements at the higher mu(0). Comparing M-0.03 and MS-0.03 conditions, which had the same methanol feeding rates, sorbitol addition increased the rHuEPO synthetic flux 4.4-fold. The glycolysis, gluconeogenesis, and PPP pathways worked uninterruptedly only at MS-0.02 condition PPP and TCA cycles worked with the highest disturbances at MS-0.04 condition, which shows the stress of increased feeding rates of methanol on cell metabolism. Biotechnol. Bioeng. 2010;105: 317-329.
机译:计算了通过巴斯德毕赤酵母(Mut(+))生产重组人促红细胞生成素(rHuEPO)的生物过程中通过中央碳途径的细胞内代谢通量。为了研究双碳源(甲醇/山梨糖醇)的代谢效果和甲醇进料速率,并使用已建立的基于化学计量的模型(包含102种代谢物和141个反应通量)来更深入地了解巴斯德毕赤酵母的调控电路。使用(MS-)和不使用(M-)山梨糖醇的四个补料分批操作进行了三种不同的恒定比生长速率(h(-1)),分别表示为M-0.03,MS-0.02,MS-0.03和MS -0.04。考虑到甲醇消耗途径,M-0.03和MS-0.02条件产生了相似的效果,并且甲醛向同化途径的通量> 85%。相反,使用双碳源条件会导致新陈代谢向异化途径转移,这与稀释率从MS-0.03变为MS-0.04相应,表明甲醇进料在较高温度下超过了代谢需求mu(0)。比较具有相同甲醇进料速率的M-0.03和MS-0.03条件,山梨糖醇的添加将rHuEPO合成通量提高了4.4倍。糖酵解,糖异生和PPP途径仅在MS-0.02情况下不间断地起作用PPP和TCA循环在MS-0.04情况下产生的干扰最大,这表明增加甲醇进料速率对细胞代谢的压力。生物技术。生恩2010; 105:317-329。

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