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通过系统组装和调节大肠杆菌中的外排泵来提高异戊二烯的产量。

Enhancing isoprenoid production through systematically assembling and modulating efflux pumps in Escherichia coli.

机构信息

Key Laboratory of Synthetic Biology, Institute of Plant Physiology and Ecology, Shanghai Institutes for Biological Sciences, Chinese Academy of Sciences, 300 Fenglin Road, Shanghai, 200032, People's Republic of China.

出版信息

Appl Microbiol Biotechnol. 2013 Sep;97(18):8057-67. doi: 10.1007/s00253-013-5062-z. Epub 2013 Jul 18.

Abstract

Enhancement of the cellular exportation of heterologous compounds is an important aspect to improve the product yield in microbial cell factory. Efflux pumps can expel various intra- or extra-cellular substances out of microbial hosts and increase the cellular tolerance. Thus in this study, by using the hydrophobic sesquiterpene (amorphadiene) and diterpene (kaurene) as two model compounds, we attempted to improve isoprenoid production through systematically engineering the efflux pumps in Escherichia coli BL21(DE3). The pleiotropic resistant pumps, AcrAB-TolC, MdtEF-TolC from E. coli and heterologous MexAB-OprM pump from Pseudomonas aeruginosa, were overexpressed, assembled, and finely modulated. We found that overexpression of AcrB and TolC components can effectively enhance the specific yield of amorphadiene and kaurene, e.g., 31 and 37 % improvement for amorphadiene compared with control, respectively. The heterologous MexB component can enhance kaurene production with 70 % improvement which is more effective than TolC and AcrB. The results suggest that the three components of tripartite efflux pumps play varied effect to enhance isoprenoid production. Considering the highly organized structure of efflux pumps and importance of components interaction, various component combinations were constructed and the copy number of key components AcrB and TolC was finely modulated as well. The results exhibit that the combination TolC and TolC and AcrB improved the specific yield of amorphadiene with 118 %, and AcrA and TolC and AcrB improved that of kaurene with 104 %. This study indicates that assembling and finely modulating efflux pumps is an effective strategy to improve the production of heterologous compounds in E. coli.

摘要

增强异源化合物的细胞输出是提高微生物细胞工厂产物产量的一个重要方面。外排泵可以将各种细胞内或细胞外物质排出微生物宿主,提高细胞耐受性。因此,在本研究中,我们使用疏水性倍半萜(变形二烯)和二萜(贝壳杉烯)作为两种模型化合物,试图通过系统工程大肠杆菌 BL21(DE3) 中的外排泵来提高异戊二烯的产量。过表达了大肠杆菌的多药耐药泵 AcrAB-TolC、MdtEF-TolC 和铜绿假单胞菌的异源 MexAB-OprM 泵,并对其进行了组装和精细调节。我们发现,过表达 AcrB 和 TolC 组分可以有效地提高变形二烯和贝壳杉烯的比产率,例如,与对照相比,变形二烯的比产率分别提高了 31%和 37%。异源 MexB 组分可以提高贝壳杉烯的产量,提高了 70%,比 TolC 和 AcrB 更有效。结果表明,三组分三联外排泵的三个组分对提高异戊二烯的产量有不同的作用。考虑到外排泵的高度组织化结构和组件相互作用的重要性,我们构建了各种组件组合,并精细调节了关键组件 AcrB 和 TolC 的拷贝数。结果表明,TolC 和 TolC 与 AcrB 的组合提高了变形二烯的比产率,达到 118%,AcrA 和 TolC 与 AcrB 的组合提高了贝壳杉烯的比产率,达到 104%。本研究表明,组装和精细调节外排泵是提高大肠杆菌中异源化合物产量的有效策略。

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