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作为系统代谢工程平台微生物宿主的大肠杆菌。

Escherichia coli as a platform microbial host for systems metabolic engineering.

作者信息

Yang Dongsoo, Prabowo Cindy Pricilia Surya, Eun Hyunmin, Park Seon Young, Cho In Jin, Jiao Song, Lee Sang Yup

机构信息

Metabolic and Biomolecular Engineering National Research Laboratory, Systems Metabolic Engineering and Systems Healthcare Cross Generation Collaborative Laboratory, Department of Chemical and Biomolecular Engineering (BK21 Plus Program), Institute for the BioCentury, Korea Advanced Institute of Science and Technology (KAIST), 291 Daehak-ro, Yuseong-gu, Daejeon 34141, Republic of Korea.

BioProcess Engineering Research Center, KAIST, 291 Daehak-ro, Yuseong-gu, Daejeon 34141, Republic of Korea.

出版信息

Essays Biochem. 2021 Jul 26;65(2):225-246. doi: 10.1042/EBC20200172.

Abstract

Bio-based production of industrially important chemicals and materials from non-edible and renewable biomass has become increasingly important to resolve the urgent worldwide issues including climate change. Also, bio-based production, instead of chemical synthesis, of food ingredients and natural products has gained ever increasing interest for health benefits. Systems metabolic engineering allows more efficient development of microbial cell factories capable of sustainable, green, and human-friendly production of diverse chemicals and materials. Escherichia coli is unarguably the most widely employed host strain for the bio-based production of chemicals and materials. In the present paper, we review the tools and strategies employed for systems metabolic engineering of E. coli. Next, representative examples and strategies for the production of chemicals including biofuels, bulk and specialty chemicals, and natural products are discussed, followed by discussion on materials including polyhydroxyalkanoates (PHAs), proteins, and nanomaterials. Lastly, future perspectives and challenges remaining for systems metabolic engineering of E. coli are discussed.

摘要

利用不可食用的可再生生物质进行生物基生产具有工业重要性的化学品和材料,对于解决包括气候变化在内的全球紧迫问题变得越来越重要。此外,基于生物的食品成分和天然产物生产,而非化学合成,因其对健康有益而越来越受到关注。系统代谢工程能够更有效地开发微生物细胞工厂,实现可持续、绿色且对人类友好的多种化学品和材料生产。毫无疑问,大肠杆菌是用于生物基化学品和材料生产最广泛使用的宿主菌株。在本文中,我们综述了用于大肠杆菌系统代谢工程的工具和策略。接下来,讨论了化学品生产的代表性实例和策略,包括生物燃料、大宗和特种化学品以及天然产物,随后讨论了材料,包括聚羟基脂肪酸酯(PHA)、蛋白质和纳米材料。最后,讨论了大肠杆菌系统代谢工程的未来前景和仍存在的挑战。

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