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Recombinant protein expression in Pichia pastoris strains with an engineered methanol utilization pathway

机译:具有工程甲醇利用途径的巴斯德毕赤酵母菌株中的重组蛋白表达

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Βackground The methylotrophic yeast Pichia pastoris has become an important host organism for recombinant protein production and is able to use methanol as a sole carbon source. The methanol utilization pathway describes all the catalytic reactions, which happen during methanol metabolism. Despite the importance of certain key enzymes in this pathway, so far very little is known about possible effects of overexpressing either of these key enzymes on the overall energetic behavior, the productivity and the substrate uptake rate in P. pastoris strains. Results A fast and easy-to-do approach based on batch cultivations with methanol pulses was used to characterize different P. pastoris strains. A strain with MutS phenotype was found to be superior over a strain with Mut+ phenotype in both the volumetric productivity and the efficiency in expressing recombinant horseradish peroxidase C1A. Consequently, either of the enzymes dihydroxyacetone synthase, transketolase or formaldehyde dehydrogenase, which play key roles in the methanol utilization pathway, was co-overexpressed in MutS strains harboring either of the reporter enzymes horseradish peroxidase or Candida antarctica lipase B. Although the co-overexpression of these enzymes did not change the stoichiometric yields of the recombinant MutS strains, significant changes in the specific growth rate, the specific substrate uptake rate and the specific productivity were observed. Co-overexpression of dihydroxyacetone synthase yielded a 2- to 3-fold more efficient conversion of the substrate methanol into product, but also resulted in a reduced volumetric productivity. Co-overexpression of formaldehyde dehydrogenase resulted in a 2-fold more efficient conversion of the substrate into product and at least similar volumetric productivities compared to strains without an engineered methanol utilization pathway, and thus turned out to be a valuable strategy to improve recombinant protein production. Conclusions Co-overexpressing enzymes of the methanol utilization pathway significantly affected the specific growth rate, the methanol uptake and the specific productivity of recombinant P. pastoris MutS strains. A recently developed methodology to determine strain specific parameters based on dynamic batch cultivations proved to be a valuable tool for fast strain characterization and thus early process development.
机译:背景甲基营养酵母巴斯德毕赤酵母已成为重组蛋白生产的重要宿主生物,并能够使用甲醇作为唯一碳源。甲醇利用途径描述了在甲醇代谢过程中发生的所有催化反应。尽管某些关键酶在该途径中很重要,但到目前为止,关于这些关键酶过表达对巴斯德毕赤酵母菌株的总体能量行为,生产力和底物摄取率的可能影响知之甚少。结果基于甲醇脉冲分批培养的快速,简便方法被用来表征不同的巴斯德毕赤酵母菌株。发现具有Mut S 表型的菌株比具有Mut + 表型的菌株在表达重组辣根过氧化物酶C1A的体积生产力和效率上都优越。因此,在甲醇利用途径中起关键作用的二羟丙酮合酶,转酮醇酶或甲醛脱氢酶在含有报道酶辣根过氧化物酶或南极假丝酵母的Mut S 菌株中共过量表达。尽管这些酶的共过量表达并没有改变重组Mut S 菌株的化学计量产量,但观察到了比生长速率,比底物吸收率和比生产率的显着变化。 。二羟基丙酮合酶的共过量表达可将底物甲醇转化为产物的效率提高了2到3倍,但同时也降低了体积生产率。与没有经过设计的甲醇利用途径的菌株相比,甲醛脱氢酶的共过量表达导致底物向产物的转化效率提高了2倍,体积生产率至少相似,因此,这是提高重组蛋白产量的有价值的策略。结论甲醇利用途径的共表达酶显着影响重组巴斯德毕赤酵母Mut S 菌株的比生长速率,甲醇吸收和比生产率。事实证明,最近开发的基于动态批量培养确定菌株特定参数的方法是快速表征菌株并因此进行早期工艺开发的有价值的工具。

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