首页> 外文期刊>Journal of industrial microbiology & biotechnology >Reduced methanol input induces increased protein output by AOX1 promoter in a trans-acting elements engineered Pichia pastoris
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Reduced methanol input induces increased protein output by AOX1 promoter in a trans-acting elements engineered Pichia pastoris

机译:降低的甲醇输入诱导AOX1启动子在工程化毕赤酵母的反演动元素中产生增加的蛋白质产量

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摘要

High oxygen consumption and heat release caused by methanol catabolism usually bring difficulties to industrial scale-up and cost for protein expression driven by methanol-induced AOX1 promoter in Pichia pastoris. Here, reduced methanol feeding levels were investigated for expression of insulin precursor in a trans-acting elements engineered P. pastoris strain MF1-IP. Insulin precursor expression level reached 6.69 g/(L supernatant) at the methanol feeding rate of 6.67 mL/(h.L broth), which was 59% higher than that in the wild-type strain WT-IP at the methanol feeding rate of 12 mL/(h.L broth). Correspondingly, the insulin precursor expression level in fermentation broth and maximum specific insulin precursor production rate was 137 and 77% higher than the WT-IP, respectively. However, oxygen consumption and heat evolution were reduced, and the highest oxygen consumption rate and heat evolution rate of the MF1-IP were 18.0 and 37.7% lower than the WT-IP, respectively.
机译:由甲醇分解代谢引起的高氧消耗和热释放通常为甲醇诱导的甲醇诱导的AOX1启动子驱动的工业扩展和蛋白质表达成本带来困难。 这里,研究了降低的甲醇进料水平以表达胰岛素前体在转动元件中的工程化P. Pastoris菌株MF1-IP中的表达。 胰岛素前体表达水平达到6.69g /(l上清液)以6.67ml /(HL肉汤)的甲醇进料速率,其比甲醇进料速率为12 ml的野生型菌株WT-IP的59%。 /(HL BROTH)。 相应地,发酵液中的胰岛素前体表达水平和最大特异性胰岛素前体的产率分别比WT-IP高出137%和77%。 然而,降低了氧气消耗和热进化,MF1-IP的最高氧消耗率和热量进化率分别比WT-IP低18.0%和37.7%。

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