Qingdao Institute of Bioenergy and Bioprocess Technology, Chinese Academy of Sciences, China.
Appl Microbiol Biotechnol. 2011 Feb;89(3):573-83. doi: 10.1007/s00253-010-2970-z. Epub 2010 Nov 4.
Confronted with the gradual and inescapable exhaustion of the earth's fossil energy resources, the bio-based process to produce platform chemicals from renewable carbohydrates is attracting growing interest. Escherichia coli has been chosen as a workhouse for the production of many valuable chemicals due to its clear genetic background, convenient to be genetically modified and good growth properties with low nutrient requirements. Rational strain development of E. coli achieved by metabolic engineering strategies has provided new processes for efficiently biotechnological production of various high-value chemical building blocks. Compared to previous reviews, this review focuses on recent advances in metabolic engineering of the industrial model bacteria E. coli that lead to efficient recombinant biocatalysts for the production of high-value organic acids like succinic acid, lactic acid, 3-hydroxypropanoic acid and glucaric acid as well as alcohols like 1,3-propanediol, xylitol, mannitol, and glycerol with the discussion of the future research in this area. Besides, this review also discusses several platform chemicals, including fumaric acid, aspartic acid, glutamic acid, sorbitol, itaconic acid, and 2,5-furan dicarboxylic acid, which have not been produced by E. coli until now.
面对地球化石能源资源逐渐枯竭且不可避免的局面,利用可再生碳水化合物生产平台化学品的生物基工艺引起了越来越多的关注。由于其清晰的遗传背景、便于基因改造以及对营养物质要求低的良好生长特性,大肠杆菌已被选为生产许多有价值化学品的“工厂”。通过代谢工程策略实现的大肠杆菌合理菌株开发为各种高价值化学结构单元的高效生物技术生产提供了新的工艺。与之前的综述相比,本篇综述重点介绍了工业模式细菌大肠杆菌的代谢工程的最新进展,这些进展为高效生产包括琥珀酸、乳酸、3-羟基丙酸和葡萄糖酸在内的高价值有机酸以及包括 1,3-丙二醇、木糖醇、甘露醇和甘油在内的醇类提供了重组生物催化剂,同时讨论了该领域未来的研究方向。此外,本篇综述还讨论了几种尚未通过大肠杆菌生产的平台化学品,包括富马酸、天冬氨酸、谷氨酸、山梨糖醇、衣康酸和 2,5-呋喃二甲酸。