Department of Chemical and Biological Engineering, Iowa State University, USA.
Department of Biochemistry, Biophysics and Molecular Biology, Iowa State University, USA.
Biotechnol Adv. 2019 Jan-Feb;37(1):246-258. doi: 10.1016/j.biotechadv.2018.12.006. Epub 2018 Dec 17.
Cell-free protein synthesis (CFPS) has become an established biotechnology tool for rapid protein expression. Over the past few decades many advances have elevated CFPS from a niche, low-efficiency system to one now capable of biomanufacturing custom proteins. Many research papers and reviews exist on the advances made in CFPS genetic template and cell extract preparation for use in E. coli systems. What is currently missing from the literature is a comprehensive review on the myriad of supplement recipes added to the CFPS reaction to support metabolism, transcription, and translation. This list of supplements has changed over the years, with a general drive towards greater simplification. Herein we provide a comprehensive list of the supplements used in CFPS, tracing major recipe classes as the field has evolved. We also provide an in-depth analysis of the proposed biochemical purpose each supplement has in the reaction. This review reveals the significance of correct supplements on overall CFPS productivity; however, the large range of supplements accommodated by CFPS also shows an inherent flexibility in the CFPS reaction as well as additional room for optimization and recipe simplification.
无细胞蛋白质合成(CFPS)已成为一种成熟的生物技术工具,可用于快速蛋白质表达。在过去的几十年中,许多进展将 CFPS 从一个利基、低效率的系统提升到现在能够生物制造定制蛋白质的系统。关于 CFPS 遗传模板和用于大肠杆菌系统的细胞提取物制备方面的进展,有许多研究论文和综述。目前文献中缺少的是对 CFPS 反应中添加的多种补充剂配方的全面综述,这些补充剂用于支持代谢、转录和翻译。多年来,这些补充剂的清单发生了变化,总的来说,朝着更加简化的方向发展。本文提供了 CFPS 中使用的补充剂的综合清单,追溯了随着该领域的发展而出现的主要配方类别。我们还深入分析了每个补充剂在反应中的预期生化作用。本综述揭示了正确补充剂对整体 CFPS 生产力的重要性;然而,CFPS 所容纳的大量补充剂也显示出 CFPS 反应具有固有的灵活性,以及进一步优化和简化配方的空间。