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首页> 外文期刊>Microbial Cell Factories >Synergistic optimisation of expression, folding, and secretion improves E. coli AppA phytase production in Pichia pastoris
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Synergistic optimisation of expression, folding, and secretion improves E. coli AppA phytase production in Pichia pastoris

机译:表达,折叠和分泌的协同优化改善了Pichia Pastoris的大肠杆菌Appa植酸酶生产

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Pichia pastoris (Komagataella phaffii) is an important platform for heterologous protein production due to its growth to high cell density and outstanding secretory capabilities. Recent developments in synthetic biology have extended the toolbox for genetic engineering of P. pastoris to improve production strains. Yet, overloading the folding and secretion capacity of the cell by over-expression of recombinant proteins is still an issue and rational design of strains is critical to achieve cost-effective industrial manufacture. Several enzymes are commercially produced in P. pastoris, with phytases being one of the biggest on the global market. Phytases are ubiquitously used as a dietary supplement for swine and poultry to increase digestibility of phytic acid, the main form of phosphorous storage in grains. Potential bottlenecks for expression of E. coli AppA phytase in P. pastoris were explored by applying bidirectional promoters (BDPs) to express AppA together with folding chaperones, disulfide bond isomerases, trafficking proteins and a cytosolic redox metabolism protein. Additionally, transcriptional studies were used to provide insights into the expression profile of BDPs. A flavoprotein encoded by ERV2 that has not been characterised in P. pastoris was used to improve the expression of the phytase, indicating its role as an alternative pathway to ERO1. Subsequent AppA production increased by 2.90-fold compared to the expression from the state of the AOX1 promoter. The microbial production of important industrial enzymes in recombinant systems can be improved by applying newly available molecular tools. Overall, the work presented here on the optimisation of phytase production in P. pastoris contributes to the improved understanding of recombinant protein folding and secretion in this important yeast microbial production host.
机译:Pichia Pastoris(Komagataella Phaffii)是由于其对高细胞密度和出色的分泌能力的增长而具有异源蛋白质产量的重要平台。合成生物学的最新发展已经扩展了P. Pastoris基因工程的工具箱,以改善生产菌株。然而,通过过载通过重组蛋白质的过度表达细胞的折叠和分泌能力仍然是一个问题,并且菌株的理性设计对于实现具有成本效益的工业制造至关重要。几种酶在P. Pastoris中商业生产,植入酶是全球市场上最大的植物。植酸酶普遍用作猪和家禽的膳食补充剂,以提高植物的消化率,谷物中的磷储存的主要形式。通过将双向启动子(BDPS)施加与折叠伴侣,二硫键异构酶,贩运蛋白质和细胞源氧化还原代谢蛋白,探讨了P. Pastoris中的大肠杆菌APPA植物酶的潜在瓶颈。另外,转录研究用于提供进入BDP的表达谱的见解。通过ERV2编码的一种香叶蛋白,其尚未以P. Pastoris在P. Pastoris中用于改善植酸酶的表达,表明其作为ERO1的替代途径的作用。与来自AOX1启动子的状态的表达相比,随后的APPA产量增加2.90倍。通过施加新可用的分子工具,可以改善重组系统中重要产业酶的微生物生产。总体而言,本文介绍了在P. Pastoris中优化Phytase生产的作品有助于改善对该重要酵母微生物生产宿主中重组蛋白折叠和分泌的改善。

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