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从天然到合成:酵母表达系统中的启动子工程。

From natural to synthetic: Promoter engineering in yeast expression systems.

机构信息

BOKU University, Department of Biotechnology, Institute of Microbiology and Microbial Biotechnology, 1190 Vienna, Austria.

Anheuser-Busch Inbev, 3000 Leuven, Belgium.

出版信息

Biotechnol Adv. 2024 Dec;77:108446. doi: 10.1016/j.biotechadv.2024.108446. Epub 2024 Sep 7.

Abstract

Synthetic promoters are particularly relevant for application not only in yeast expression systems designed for high-level heterologous protein production but also in other applications such as metabolic engineering, cell biological research, and stage-specific gene expression control. By designing synthetic promoters, researcher can create customized expression systems tailored to specific needs, whether it is maximizing protein production or precisely controlling gene expression at different stages of a process. While recognizing the limitations of endogenous promoters, they also provide important information needed to design synthetic promoters. In this review, emphasis will be placed on some key approaches to identify endogenous, and to generate synthetic promoters in yeast expression systems. It shows the connection between endogenous and synthetic promoters, highlighting how their interplay contributes to promoter development. Furthermore, this review illustrates recent developments in biotechnological advancements and discusses how this field will evolve in order to develop custom-made promoters for diverse applications. This review offers detailed information, explores the transition from endogenous to synthetic promoters, and presents valuable perspectives on the next generation of promoter design strategies.

摘要

合成启动子不仅在设计用于高水平异源蛋白生产的酵母表达系统中具有重要应用,还在代谢工程、细胞生物学研究和特定阶段基因表达控制等其他应用中具有重要意义。通过设计合成启动子,研究人员可以创建定制的表达系统,以满足特定需求,无论是最大限度地提高蛋白质产量还是在过程的不同阶段精确控制基因表达。在认识到内源性启动子的局限性的同时,它们也为设计合成启动子提供了所需的重要信息。在本综述中,重点将放在一些关键方法上,以确定酵母表达系统中的内源性和合成启动子。它展示了内源性和合成启动子之间的联系,突出了它们的相互作用如何促进启动子的发展。此外,本综述还说明了生物技术进步的最新发展,并讨论了该领域将如何发展,以便为各种应用开发定制的启动子。本综述提供了详细的信息,探讨了从内源性到合成启动子的转变,并对下一代启动子设计策略提出了有价值的观点。

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