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提高微生物生产的整合表达强度。

Improving the Intensity of Integrated Expression for Microbial Production.

机构信息

Key Laboratory of Carbohydrate Chemistry and Biotechnology, Ministry of Education, School of Pharmaceutical Sciences, Jiangnan University, Wuxi 214122, PR China.

National Engineering Laboratory for Cereal Fermentation Technology, School of Biotechnology, Jiangnan University, Wuxi 214122, PR China.

出版信息

ACS Synth Biol. 2021 Nov 19;10(11):2796-2807. doi: 10.1021/acssynbio.1c00334. Epub 2021 Nov 5.

Abstract

Chromosomal integration of exogenous genes is preferred for industrially related fermentation, as plasmid-mediated fermentation leads to extra metabolic burden and genetic instability. Moreover, with the development and advancement of genome engineering and gene editing technologies, inserting genes into chromosomes has become more convenient; integration expression is extensively utilized in microorganisms for industrial bioproduction and expected to become the trend of recombinant protein expression. However, in actual research and application, it is important to enhance the expression of heterologous genes at the host genome level. Herein, we summarized the basic principles and characteristics of genomic integration; furthermore, we highlighted strategies to improve the expression of chromosomal integration of genes and pathways in host strains from three aspects, including chassis cell optimization, regulation of expression elements in gene expression cassettes, optimization of gene dose level and integration sites on chromosomes. Moreover, we reviewed and summarized the relevant studies on the application of integrated expression in the exploration of gene function and the various types of industrial microorganism production. Consequently, this review would serve as a reference for the better application of integrated expression.

摘要

外源基因的染色体整合更适合工业相关的发酵,因为质粒介导的发酵会导致额外的代谢负担和遗传不稳定性。此外,随着基因组工程和基因编辑技术的发展和进步,将基因插入染色体变得更加方便;整合表达在工业生物生产中被广泛应用,并有望成为重组蛋白表达的趋势。然而,在实际的研究和应用中,提高宿主基因组水平上异源基因的表达很重要。在此,我们总结了基因组整合的基本原理和特点;此外,我们从底盘细胞优化、基因表达盒中表达元件的调控、基因剂量水平和染色体整合位点的优化三个方面,强调了提高宿主菌株中基因染色体整合表达的策略。此外,我们还回顾和总结了整合表达在基因功能探索和各种工业微生物生产中的应用的相关研究。因此,本综述将为整合表达的更好应用提供参考。

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