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首页> 外文期刊>Biotechnology Progress >Effect of Dilution Rate and Methanol-Glycerol Mixed Feeding on Heterologous Rhizopus oryzae Lipase Production with Pichia pastoris Mut(+) Phenotype in Continuous Culture
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Effect of Dilution Rate and Methanol-Glycerol Mixed Feeding on Heterologous Rhizopus oryzae Lipase Production with Pichia pastoris Mut(+) Phenotype in Continuous Culture

机译:稀释率和甲醇-甘油混合添加对连续培养毕赤酵母Mut(+)表型异源米根霉脂肪酶生产的影响

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摘要

The induction using substrate mixtures is an operational strategy for improving the productivity of heterologous protein production with Pichia pastoris. Glycerol as a cosubstrate allows for growth at a higher specific growth rate, but also has been reported to be repressor of the expression from the AOX1 promoter. Thus, further insights about the effects of glycerol are required for designing the induction stage with mixed substrates. The production of Rhizopus oryzae lipase (ROL) was used as a model system to investigate the application of methanol-glycerol feeding mixtures in fast metabolizing methanol phenotype. Cultures were performed in a simple chemostat system and the response surface methodology was used for the evaluation of both dilution rate and methanol-glycerol feeding composition as experimental factors. Our results indicate that productivity and yield of ROL are strongly affected by dilution rate, with no interaction effect between the involved factors. Productivity showed the highest value around 0.04-0.06 h(-1), while ROL yield decreased along the whole dilution rate range evaluated (0.03-0.1 h(-1)). Compared to production level achieved with methanol-only feeding, the highest specific productivity was similar in mixed feeding (0.9 UA g-biomass(-1) h(-1)), but volumetric productivity was 70% higher. Kinetic analysis showed that these results are explained by the effects of dilution rate on specific methanol uptake rate, instead of a repressor effect caused by glycerol feeding. It is concluded that despite the effect of dilution rate on ROL yield, mixed feeding strategy is a proper process option to be applied to P. pastoris Mut(+) phenotype for heterologous protein production. (C) 2015 American Institute of Chemical Engineers
机译:使用底物混合物的诱导是用于提高巴斯德毕赤酵母生产异源蛋白质的生产率的操作策略。甘油作为共底物允许以更高的比生长速率生长,但是据报道它也是AOX1启动子表达的阻遏物。因此,在设计具有混合底物的诱导阶段时,需要对甘油的作用有进一步的了解。以米根霉脂肪酶(ROL)的生产为模型系统,研究了甲醇-甘油进料混合物在快速代谢甲醇表型中的应用。在简单的恒化器系统中进行培养,并使用响应面方法评估稀释率和甲醇-甘油进料组成作为实验因素。我们的结果表明,稀释倍数强烈影响ROL的生产率和产率,而相关因素之间没有相互作用。生产率在0.04-0.06 h(-1)处显示出最大值,而ROL产量在整个稀释率范围内(0.03-0.1 h(-1))下降。与仅使用甲醇饲喂相比达到的生产水平,混合饲喂中的最高比生产率相似(0.9 UA g-生物质(-1)h(-1)),但体积生产率提高了70%。动力学分析表明,这些结果可以通过稀释率对特定甲醇吸收率的影响来解释,而不是由甘油进料引起的阻遏剂作用来解释。结论是,尽管稀释率对ROL产量有影响,但混合饲喂策略是适用于巴斯德毕赤酵母Mut(+)表型生产异源蛋白的合适方法。 (C)2015美国化学工程师学会

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