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Simultaneous production and partitioning of heterologous polyketide and isoprenoid natural products in an Escherichia coli two-phase bioprocess  ( EI收录)  

文献类型:期刊文献

英文题名:Simultaneous production and partitioning of heterologous polyketide and isoprenoid natural products in an Escherichia coli two-phase bioprocess

作者:Boghigian, Brett A.[1]; Myint, Melissa[1]; Wu, Jiequn[1,2]; Pfeifer, Blaine A.[1]

机构:[1] Department of Chemical and Biological Engineering, Science and Technology Center, Tufts University, 4 Colby Street, Medford, MA 02155, United States; [2] State Key Laboratory of Bioreactor Engineering, National Engineering Research Center for Biotechnology, East China University of Science and Technology, Shanghai 200237, China

年份:2011

卷号:38

期号:11

起止页码:1809

外文期刊名:Journal of Industrial Microbiology and Biotechnology

收录:EI(收录号:20242616517978)

语种:英文

外文关键词:Biochemistry - Bioconversion - Bioreactors - Drug products - Ketones - Lipids - Molecules

摘要:Natural products have long served as rich sources of drugs possessing a wide range of pharmacological activities. The discovery and development of natural product drug candidates is often hampered by the inability to efficiently scale and produce a molecule of interest, due to inherent qualities of the native producer. Heterologous biosynthesis in an engineering and process-friendly host emerged as an option to produce complex natural products. Escherichia coli has previously been utilized to produce complex precursors to two popular natural product drugs, erythromycin and paclitaxel. These two molecules represent two of the largest classes of natural products, polyketides and isoprenoids, respectively. In this study, we have developed a platform E. coli strain capable of simultaneous production of both product precursors at titers greater than 15 mg l-1. The utilization of a two-phase batch bioreactor allowed for very strong in situ separation (having a partitioning coefficient of greater than 5,000), which would facilitate downstream purification processes. The system developed here could also be used in metagenomic studies to screen environmental DNA for natural product discovery and preliminary production experiments. ? 2011 Society for Industrial Microbiology.

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