毕赤酵母
代谢工程
合成生物学
异源的
计算生物学
生物
蛋白质工程
毕赤酵母
酵母
基因组工程
代谢途径
克隆(编程)
清脆的
生物技术
生化工程
Cas9
基因
遗传学
生物化学
重组DNA
计算机科学
工程类
酶
程序设计语言
作者
David A. Peña,Brigitte Gasser,Jürgen Zanghellini,Matthias G. Steiger,Diethard Mattanovich
标识
DOI:10.1016/j.ymben.2018.04.017
摘要
Besides its use for efficient production of recombinant proteins the methylotrophic yeast Pichia pastoris (syn. Komagataella spp.) has been increasingly employed as a platform to produce metabolites of varying origin. We summarize here the impressive methodological developments of the last years to model and analyze the metabolism of P. pastoris, and to engineer its genome and metabolic pathways. Efficient methods to insert, modify or delete genes via homologous recombination and CRISPR/Cas9, supported by modular cloning techniques, have been reported. An outstanding early example of metabolic engineering in P. pastoris was the humanization of protein glycosylation. More recently the cell metabolism was engineered also to enhance the productivity of heterologous proteins. The last few years have seen an increased number of metabolic pathway design and engineering in P. pastoris, mainly towards the production of complex (secondary) metabolites. In this review, we discuss the potential role of P. pastoris as a platform for metabolic engineering, its strengths, and major requirements for future developments of chassis strains based on synthetic biology principles.
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