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通过合成生物学工程化工业微生物的稳健性。

Engineering the robustness of industrial microbes through synthetic biology.

机构信息

Institute of Microbiology, Chinese Academy of Sciences, Beijing, China.

出版信息

Trends Microbiol. 2012 Feb;20(2):94-101. doi: 10.1016/j.tim.2011.12.003. Epub 2012 Jan 20.

Abstract

Microbial fermentations and bioconversions play a central role in the production of pharmaceuticals, enzymes and chemicals. To meet the demands of industrial production, it is desirable that microbes maintain a maximized carbon flux towards target metabolites regardless of fluctuations in intracellular or extracellular environments. This requires cellular systems that maintain functional stability and dynamic homeostasis in a given physiological state, or manipulate transitions between different physiological states. Stable maintenance or smooth transition can be achieved through engineering of dynamic controllability, modular and hierarchical organization, or functional redundancy, three key features of biological robustness in a cellular system. This review summarizes how synthetic biology can be used to improve the robustness of industrial microbes.

摘要

微生物发酵和生物转化在药物、酶和化学品的生产中起着核心作用。为了满足工业生产的需求,理想情况下,微生物应保持最大化的碳通量流向目标代谢物,而不受细胞内或细胞外环境波动的影响。这需要细胞系统在给定的生理状态下保持功能稳定性和动态平衡,或操纵不同生理状态之间的转变。通过对动态可控性、模块化和层次化组织或功能冗余的工程设计,可以实现稳定的维持或平稳的过渡,这是细胞系统中生物鲁棒性的三个关键特征。本文综述了合成生物学如何用于提高工业微生物的鲁棒性。

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