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

Метанол-независимая экспрессия белка с промотором AOX1 посредством инженерии транc-действующих элементов и индукции переключением глюкоза–глицерин в Pichia pastoris
Xiangshan Zhou, Menghao Cai, Yuanxing Zhang, Fei Qi, Zhiwei Song, Jinjia Wang, Xiaolong Wang, Lei Shi, Ping Zhang
2017-02-02

AOX1 promoterPichia pastorisglucose-glycerol-shift inductionmethanol-free expressiontrans-acting elements engineering
Abstract The alcohol oxidase 1 promoter (P AOX1 ) 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 t rans - acting elements of P AOX1 and combinatorially engineering of them, we successfully constructed a methanol-free P AOX1 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 P AOX1 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 P AOX1 . 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 P AOX1 system.
1
A glucose–glycerol-shift induction protocol (batch with 40 g/L glucose, maintaining residual glucose ≥20 g/L, then glycerol induction) enabled P_AOX1 activation without methanol.
2
Combinatorial engineering of trans-acting elements of P_AOX1 produced a methanol-free P_AOX1 start-up strain by deleting three transcription repressors and overexpressing one activator.
3
The engineered strain expressed GFP at 77% of wild-type methanol-induced levels when grown in glycerol.
4
The methanol-free process substantially reduced oxygen consumption and heat evolution compared with wild-type methanol induction, offering a safer, more efficient alternative to traditional P_AOX1 induction.
5
Using the methanol-free strain and optimized bioprocess, insulin precursor production reached 2.46 g/L in a 5-L bioreactor.

Methanol-free Pichia pastoris strain with engineered AOX1 promoter trans-acting elements and the glucose–glycerol-shift induction bioprocess

Ability of the engineered AOX1 promoter system and glucose–glycerol-shift induction to drive high-level, methanol-independent recombinant protein expression (GFP and insulin precursor), including production titer, induction control (glucose residual management), and reduced oxygen/heat demand

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2017-02-02
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Xiangshan Zhou
Menghao Cai
Yuanxing Zhang
Fei Qi
Zhiwei Song
Jinjia Wang
Xiaolong Wang
Lei Shi
Ping Zhang
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