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Statistically Designed Medium Reveals Interactions between Metabolism and Genetic Information Processing for Production of Stable Human Serum Albumin in Pichia pastoris

机译:统计设计的培养基揭示了毕赤酵母中稳定的人血清白蛋白生产的代谢和遗传信息处理之间的相互作用。

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摘要

Human serum albumin (HSA), sourced from human serum, has been an important therapeutic protein for several decades. is strongly considered as an expression platform, but proteolytic degradation of recombinant HSA in the culture filtrate remains a major bottleneck for use of this system. In this study, we have reported the development of a medium that minimized proteolytic degradation across different copy number constructs. A synthetic codon-optimized copy of HSA was cloned downstream of α–factor secretory signal sequence and expressed in under the control of Alcohol oxidase 1 promoter. A two-copy expression cassette was also prepared. Culture conditions and medium components were identified and optimized using statistical tools to develop a medium that supported stable production of HSA. Comparative analysis of transcriptome data obtained by cultivation on optimized and unoptimized medium indicated upregulation of genes involved in methanol metabolism, alternate nitrogen assimilation, and DNA transcription, whereas enzymes of translation and secretion were downregulated. Several new genes were identified that could serve as possible targets for strain engineering of this yeast.
机译:源自人血清的人血清白蛋白(HSA)几十年来一直是重要的治疗蛋白。强烈地将其作为表达平台,但是培养滤液中重组HSA的蛋白水解降解仍然是使用该系统的主要瓶颈。在这项研究中,我们已经报道了一种在不同拷贝数构建体上将蛋白水解降解最小化的培养基的开发。合成的经密码子优化的HSA副本被克隆到α因子分泌信号序列的下游,并在酒精氧化酶1启动子的控制下表达。还制备了两拷贝表达盒。使用统计工具确定并优化了培养条件和培养基成分,以开发支持稳定生产HSA的培养基。通过在优化和未优化培养基上培养获得的转录组数据的比较分析表明,参与甲醇代谢,交替氮同化和DNA转录的基因上调,而翻译和分泌酶被下调。确定了几个新基因,可以作为该酵母菌株工程的可能靶标。

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