首页> 外文期刊>Biotechnology Progress >Production of a Sterol Esterase From Ophiostoma piceae in Batch and Fed-Batch Bioprocesses Using Different Pichia pastoris Phenotypes as Cell Factory
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Production of a Sterol Esterase From Ophiostoma piceae in Batch and Fed-Batch Bioprocesses Using Different Pichia pastoris Phenotypes as Cell Factory

机译:使用不同的毕赤酵母表型作为细胞工厂,从蛇形眼(Ophiostoma piceae)分批和补料分批生产生物甾醇酯酶。

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摘要

The potential biotechnological applications for the Ophiostoma piceae sterol esterase (OPE) are conditioned to the availability of high enzyme amounts at low prices. This enzyme is a versatile biocatalyst with different biotechnological applications. In this work a systematic study on its heterologous production in different Pichia pastoris strains and operational strategies is presented. The best results were obtained using an AOX1 defective yeast strain in a fed-batch bioprocess using methanol as inducer substrate at a set point of 2.5 g L~(-1) and sorbitol as cosubstrate by means of a preprogramed exponential feeding rate at a μ, = 0.02 h~(-1) , reaching 30 U mL~(-1) of enzyme and a volumetric productivity of 403.5 U LT h~(-1) . These values are twofold higher than those obtained with a Mut~+ phenotype using methanol a sole carbon source. OPE was the main protein secreted by the yeast, 55% for Muf versus 25% for Mut~+.
机译:眼镜蛇皮藻固醇酯酶(OPE)的潜在生物技术应用条件是要以低价获得大量酶。该酶是具有不同生物技术应用的通用生物催化剂。在这项工作中,系统地研究了其在不同巴斯德毕赤酵母菌株中的异源生产和操作策略。使用AOX1缺陷型酵母菌株在分批补料生物工艺中获得最佳结果,该工艺使用甲醇作为设定浓度为2.5 g L〜(-1)的诱导物底物和山梨糖醇作为共底物,其预编程的指数进料速率为μ ,= 0.02h〜(-1),达到30UmL〜(-1)的酶和403.5U LT h〜(-1)的体积生产率。这些值比使用甲醇作为唯一碳源的Mut〜+表型获得的值高两倍。 OPE是酵母分泌的主要蛋白质,Muf为55%,而Mut〜+为25%。

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