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用于生产异源蛋白的酵母系统生物技术。

Yeast systems biotechnology for the production of heterologous proteins.

作者信息

Graf Alexandra, Dragosits Martin, Gasser Brigitte, Mattanovich Diethard

机构信息

Department of Biotechnology, Institute of Applied Microbiology, University of Natural Resources and Applied Life Sciences, Vienna, Austria.

出版信息

FEMS Yeast Res. 2009 May;9(3):335-48. doi: 10.1111/j.1567-1364.2009.00507.x. Epub 2009 Apr 1.

Abstract

Systems biotechnology has been established as a highly potent tool for bioprocess development in recent years. The applicability to complex metabolic processes such as protein synthesis and secretion, however, is still in its infancy. While yeasts are frequently applied for heterologous protein production, more progress in this field has been achieved for bacterial and mammalian cell culture systems than for yeasts. A critical comparison between different protein production systems, as provided in this review, can aid in assessing the potentials and pitfalls of applying systems biotechnology concepts to heterologous protein producing yeasts. Apart from modelling, the methodological basis of systems biology strongly relies on postgenomic methods. However, this methodology is rapidly moving so that more global data with much higher sensitivity will be achieved in near future. The development of next generation sequencing technology enables an unexpected revival of genomic approaches, providing new potential for evolutionary engineering and inverse metabolic engineering.

摘要

近年来,系统生物技术已成为生物工艺开发的一种高效工具。然而,其在蛋白质合成与分泌等复杂代谢过程中的适用性仍处于起步阶段。虽然酵母常用于异源蛋白质生产,但与细菌和哺乳动物细胞培养系统相比,该领域在酵母方面取得的进展较少。本综述对不同蛋白质生产系统进行的关键比较,有助于评估将系统生物技术概念应用于异源蛋白质生产酵母的潜力和缺陷。除建模外,系统生物学的方法基础强烈依赖于后基因组方法。然而,这种方法正在迅速发展,因此在不久的将来将获得更全面、灵敏度更高的数据。下一代测序技术的发展使基因组方法意外复兴,为进化工程和逆向代谢工程提供了新的潜力。

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