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Metabolic engineering and synthetic biology approaches driving isoprenoid production in Escherichia coli

机译:代谢工程和合成生物学方法在大肠杆菌中推动异戊二烯生产

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Isoprenoids comprise the largest family of natural organic compounds with many useful applications in the pharmaceutical, nutraceutical, and industrial fields. Rapid developments in metabolic engineering and synthetic biology have facilitated the engineering of isoprenoid biosynthetic pathways in Escherichia coli to induce high levels of production of many different isoprenoids. In this review, the stem pathways for synthesizing isoprene units as well as the branch pathways deriving diverse isoprenoids from the isoprene units have been summarized. The review also highlights the metabolic engineering efforts made for the biosynthesis of hemiterpenoids, monoterpenoids, sesquiterpenoids, diterpenoids, carotenoids, retinoids, and coenzyme Q(10) in E. coli. Perspectives and future directions for the synthesis of novel isoprenoids, decoration of isoprenoids using cytochrome P450 enzymes, and secretion or storage of isoprenoids in E. coli have also been included. (C) 2017 Elsevier Ltd. All rights reserved.
机译:异戊二烯包含最大的天然有机化合物家族,在制药,营养保健品和工业领域具有许多有用的应用。代谢工程和合成生物学的快速发展已经促进了大肠杆菌在大肠杆菌中的异戊二烯生物合成途径的工程,诱导了许多不同异戊二烯的高水平生产。在该评论中,已经总结了用于合成异戊二烯单元以及从异戊二烯单元中获得不同异戊二烯的分支途径的茎途径。审查还突出了在大肠杆菌中对溶质吡胶,单萜,倍二萜,类吡啶蔗多,二萜,类胡萝卜素,类视黄曲体和辅酶Q(10)的生物合成的代谢工程力。还包括透视和未来方向,用于合成新型异戊二烯,使用细胞色素P450酶的异戊二烯的装饰,以及大肠杆菌中的异戊二烯的分泌或储存。 (c)2017 Elsevier Ltd.保留所有权利。

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