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首页> 外文期刊>Bioresource Technology: Biomass, Bioenergy, Biowastes, Conversion Technologies, Biotransformations, Production Technologies >Engineering metabolic pathways in Escherichia coli for constructing a 'microbial chassis' for biochemical production
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Engineering metabolic pathways in Escherichia coli for constructing a 'microbial chassis' for biochemical production

机译:Escherichia Coli工程代谢途径构建“微生物底盘”进行生化生产

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The present work reviews literature describing the re-design of the metabolic pathways of a microbial host using sophisticated genetic tools, yielding strains for producing value-added chemicals including fuels, building-block chemicals, pharmaceuticals, and derivatives. This work employed Escherichia coli, a well-studied microorganism that has been successfully engineered to produce various chemicals. E. coli has several advantages compared with other microorganisms, including robustness, and handling. To achieve efficient productivities of target compounds, an engineered E. coli should accumulate metabolic precursors of target compounds. Multiple researchers have reported the use of pathway engineering to generate strains capable of accumulating various metabolic precursors, including pyruvate, acetyl-CoA, malonyl-CoA, mevalonate and shikimate. The aim of this review provides a promising guideline for designing E. coli strains capable of producing a variety of useful chemicals. Herein, the present work reviews their common and unique strategies, treating metabolically engineered E. coli as a "microbial chassis". (C) 2017 Elsevier Ltd. All rights reserved.
机译:本工作评论了使用复杂的遗传工具的微生物宿主的代谢途径重新设计的文献,得到了生产增值化学品,包括燃料,构建化学品,药物和衍生物。这项工作就业,是大肠杆菌,是一项熟练的微生物,已经成功地设计以生产各种化学品。与其他微生物相比,大肠杆菌有几个优点,包括鲁棒性和处理。为了实现目标化合物的有效产品,工程化的大肠杆菌应该积累靶化合物的代谢前体。多个研究人员据报道,使用途径工程来产生能够积累各种代谢前体的菌株,包括丙酮酸,乙酰辅酶,丙二酰基-CoA,甲羟戊酯和Shikimate。本综述的目的提供了设计能够产生各种有用的化学品的大肠杆菌菌株的有希望的准则。在此,本作研究其常见和独特的策略,将代谢工程化的大肠杆菌视为“微生物底盘”。 (c)2017 Elsevier Ltd.保留所有权利。

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