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Methanol-Independent Protein Expression by AOX1 Promoter with trans-Acting Elements Engineering and Glucose-Glycerol-Shift Induction in Pichia pastoris

机译:AOX1启动子与反作用元件工程和葡萄糖 - 甘油转移诱导的甲醇无关的蛋白质表达,Pichia Pastoris

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The alcohol oxidase 1 promoter (PAOX1) of Pichia pastoris is commonly used for high level expression of recombinant proteins. While the safety risk of methanol and tough process control for methanol induction usually cause problems especially in large-scale fermentation. By testing the functions of trans-acting elements of PAOX1 and combinatorially engineering of them, we successfully constructed a methanol-free PAOX1 start-up strain, in which, three transcription repressors were identified and deleted and, one transcription activator were overexpressed. The strain expressed 77% GFP levels in glycerol compared to the wide-type in methanol. Then, insulin precursor (IP) was expressed, taking which as a model, we developed a novel glucose-glycerol-shift induced PAOX1 start-up for this methanol-free strain. A batch phase with glucose of 40?g/L followed by controlling residual glucose not lower than 20?g/L was compatible for supporting cell growth and suppressing PAOX1. Then, glycerol induction was started after glucose used up. Accordingly, an optimal bioprocess was further determined, generating a high IP production of 2.46?g/L in a 5-L bioreactor with dramatical decrease of oxygen consumption and heat evolution comparing with the wild-type in methanol. This mutant and bioprocess represent a safe and efficient alternative to the traditional glycerol-repressed/methanol-induced PAOX1 system.
机译:Pichia Pastoris的醇氧化酶1启动子(PAOX1)通常用于重组蛋白的高水平表达。虽然甲醇的安全风险和对甲醇诱导的艰难过程控制通常会导致尤其导致大规模发酵的问题。通过测试Paox1的反式作用元件的功能和它们的组合工程,我们成功地构建了一种无甲醇的PaOx1启动菌株,其中鉴定并删除了三种转录阻遏物,并且过表达了一种转录激活剂。与甲醇中的宽型相比,该菌株表达了甘油中的77%GFP水平。然后,表达胰岛素前体(IP),以其为模型,我们开发了一种新的葡萄糖 - 甘油转移诱导的Paox1启动,用于这种无甲醇菌株。葡萄糖的分批相,葡萄糖为40〜G / L,然后控制残余葡萄糖不低于20μl≤k1,以支持细胞生长和抑制paOx1。然后,甘油诱导在葡萄糖用完后开始。因此,进一步确定了最佳的生物过程,在5-L生物反应器中产生高IP产生的2.46μg/ L,其氧气消耗和热进化与甲醇中的野生型相比进行了显着降低。该突变体和生物处理代表了传统甘油抑制/甲醇诱导的PAOX1系统的安全有效替代替代品。

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