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毕赤酵母中提高蛋白质和生物制品产量的工程策略:综述。

Engineering strategies for enhanced production of protein and bio-products in Pichia pastoris: A review.

机构信息

Department of Chemical and Biological Engineering, University of Ottawa, 161 Louis Pasteur Private, Ottawa, ON K1N 6N5, Canada.

School of Chemical Engineering and Technology, Qingdao University of Science and Technology, Qingdao, China; Department of Chemical and Biological Engineering, University of Ottawa, 161 Louis Pasteur Private, Ottawa, ON K1N 6N5, Canada.

出版信息

Biotechnol Adv. 2018 Jan-Feb;36(1):182-195. doi: 10.1016/j.biotechadv.2017.11.002. Epub 2017 Nov 10.

Abstract

Pichia pastoris has been recognized as one of the most industrially important hosts for heterologous protein production. Despite its high protein productivity, the optimization of P. pastoris cultivation is still imperative due to strain- and product-specific challenges such as promoter strength, methanol utilization type and oxygen demand. To address the issues, strategies involving genetic and process engineering have been employed. Optimization of codon usage and gene dosage, as well as engineering of promoters, protein secretion pathways and methanol metabolic pathways have proved beneficial to innate protein expression levels. Large-scale production of proteins via high cell density fermentation additionally relies on the optimization of process parameters including methanol feed rate, induction temperature and specific growth rate. Recent progress related to the enhanced production of proteins in P. pastoris via various genetic engineering and cultivation strategies are reviewed. Insight into the regulation of the P. pastoris alcohol oxidase 1 (AOX1) promoter and the development of methanol-free systems are highlighted. Novel cultivation strategies such as mixed substrate feeding are discussed. Recent advances regarding substrate and product monitoring techniques are also summarized. Application of P. pastoris to the production of biodiesel and other value-added products via metabolic engineering are also reviewed. P. pastoris is becoming an indispensable platform through the use of these combined engineering strategies.

摘要

毕赤酵母已被公认为是用于异源蛋白生产的最重要的工业宿主之一。尽管毕赤酵母具有很高的蛋白质生产能力,但由于启动子强度、甲醇利用类型和需氧量等菌株和产品特异性挑战,仍需要对其培养进行优化。为了解决这些问题,已经采用了遗传和过程工程策略。优化密码子使用和基因剂量,以及工程化启动子、蛋白质分泌途径和甲醇代谢途径,已被证明有助于提高天然蛋白的表达水平。通过高密度发酵进行大规模蛋白质生产还依赖于优化过程参数,包括甲醇进料速率、诱导温度和比生长速率。本文综述了通过各种遗传工程和培养策略提高毕赤酵母蛋白产量的最新进展。重点介绍了对毕赤酵母醇氧化酶 1(AOX1)启动子的调控以及无甲醇系统的开发。讨论了混合基质进料等新型培养策略。还总结了关于基质和产物监测技术的最新进展。通过代谢工程将毕赤酵母应用于生物柴油和其他增值产品的生产也进行了综述。通过使用这些组合工程策略,毕赤酵母正在成为一个不可或缺的平台。

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