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微生物代谢工程合成化学品。

Synthesis of chemicals by metabolic engineering of microbes.

机构信息

State Key Laboratory of Chemical Resource Engineering, Beijing University of Chemical Technology, 15#, Beisanhuan East Road, Chaoyang District, Beijing 100029, China.

出版信息

Chem Soc Rev. 2015 Jun 7;44(11):3760-85. doi: 10.1039/c5cs00159e.

Abstract

Metabolic engineering is a powerful tool for the sustainable production of chemicals. Over the years, the exploration of microbial, animal and plant metabolism has generated a wealth of valuable genetic information. The prudent application of this knowledge on cellular metabolism and biochemistry has enabled the construction of novel metabolic pathways that do not exist in nature or enhance existing ones. The hand in hand development of computational technology, protein science and genetic manipulation tools has formed the basis of powerful emerging technologies that make the production of green chemicals and fuels a reality. Microbial production of chemicals is more feasible compared to plant and animal systems, due to simpler genetic make-up and amenable growth rates. Here, we summarize the recent progress in the synthesis of biofuels, value added chemicals, pharmaceuticals and nutraceuticals via metabolic engineering of microbes.

摘要

代谢工程是可持续生产化学品的有力工具。多年来,对微生物、动物和植物代谢的探索产生了大量有价值的遗传信息。谨慎应用这些关于细胞代谢和生物化学的知识,使构建自然界中不存在的新型代谢途径或增强现有途径成为可能。计算技术、蛋白质科学和遗传操作工具的协同发展为强大的新兴技术奠定了基础,使绿色化学品和燃料的生产成为现实。与植物和动物系统相比,微生物生产化学品的可行性更高,因为微生物的遗传组成更简单,生长速度更快。在这里,我们总结了通过微生物代谢工程合成生物燃料、高附加值化学品、药物和营养保健品的最新进展。

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