Producing recombinant proteins in Vibrio natriegens.

IF 4.3 2区 生物学 Q1 BIOTECHNOLOGY & APPLIED MICROBIOLOGY Microbial Cell Factories Pub Date : 2024-07-24 DOI:10.1186/s12934-024-02455-5
Matthew Smith, José Sánchez Hernández, Simon Messing, Nitya Ramakrishnan, Brianna Higgins, Jennifer Mehalko, Shelley Perkins, Vanessa E Wall, Carissa Grose, Peter H Frank, Julia Cregger, Phuong Vi Le, Adam Johnson, Mukul Sherekar, Morgan Pagonis, Matt Drew, Min Hong, Stephanie R T Widmeyer, John-Paul Denson, Kelly Snead, Ivy Poon, Timothy Waybright, Allison Champagne, Dominic Esposito, Jane Jones, Troy Taylor, William Gillette
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Abstract

The diversity of chemical and structural attributes of proteins makes it inherently difficult to produce a wide range of proteins in a single recombinant protein production system. The nature of the target proteins themselves, along with cost, ease of use, and speed, are typically cited as major factors to consider in production. Despite a wide variety of alternative expression systems, most recombinant proteins for research and therapeutics are produced in a limited number of systems: Escherichia coli, yeast, insect cells, and the mammalian cell lines HEK293 and CHO. Recent interest in Vibrio natriegens as a new bacterial recombinant protein expression host is due in part to its short doubling time of ≤ 10 min but also stems from the promise of compatibility with techniques and genetic systems developed for E. coli. We successfully incorporated V. natriegens as an additional bacterial expression system for recombinant protein production and report improvements to published protocols as well as new protocols that expand the versatility of the system. While not all proteins benefit from production in V. natriegens, we successfully produced several proteins that were difficult or impossible to produce in E. coli. We also show that in some cases, the increased yield is due to higher levels of properly folded protein. Additionally, we were able to adapt our enhanced isotope incorporation methods for use with V. natriegens. Taken together, these observations and improvements allowed production of proteins for structural biology, biochemistry, assay development, and structure-based drug design in V. natriegens that were impossible and/or unaffordable to produce in E. coli.

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在纳氏弧菌中生产重组蛋白质。
蛋白质的化学和结构属性多种多样,因此很难在单一的重组蛋白质生产系统中生产出多种蛋白质。目标蛋白质本身的性质以及成本、易用性和速度通常是生产中需要考虑的主要因素。尽管有多种可供选择的表达系统,但大多数用于研究和治疗的重组蛋白都是在有限的几个系统中生产的:大肠杆菌、酵母、昆虫细胞以及哺乳动物细胞系 HEK293 和 CHO。最近,人们对纳氏弧菌作为一种新的细菌重组蛋白表达宿主产生了兴趣,部分原因是它的加倍时间短(≤ 10 分钟),但也因为它有望与为大肠杆菌开发的技术和基因系统兼容。我们成功地将 V. natriegens 作为一种额外的细菌表达系统用于重组蛋白的生产,并报告了对已发表方案的改进以及扩展该系统多功能性的新方案。虽然并非所有蛋白质都能从纳氏酵母菌的生产中获益,但我们成功地生产出了几种在大肠杆菌中难以或无法生产的蛋白质。我们还证明,在某些情况下,产量的提高是由于正确折叠的蛋白质水平提高了。此外,我们还能将增强同位素掺入方法应用于 V. natriegens。总之,通过这些观察和改进,我们可以在纳曲霉中生产出结构生物学、生物化学、检测开发和基于结构的药物设计所需的蛋白质,而在大肠杆菌中生产这些蛋白质是不可能和/或负担不起的。
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来源期刊
Microbial Cell Factories
Microbial Cell Factories 工程技术-生物工程与应用微生物
CiteScore
9.30
自引率
4.70%
发文量
235
审稿时长
2.3 months
期刊介绍: Microbial Cell Factories is an open access peer-reviewed journal that covers any topic related to the development, use and investigation of microbial cells as producers of recombinant proteins and natural products, or as catalyzers of biological transformations of industrial interest. Microbial Cell Factories is the world leading, primary research journal fully focusing on Applied Microbiology. The journal is divided into the following editorial sections: -Metabolic engineering -Synthetic biology -Whole-cell biocatalysis -Microbial regulations -Recombinant protein production/bioprocessing -Production of natural compounds -Systems biology of cell factories -Microbial production processes -Cell-free systems
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