Optimization of a whole-cell biocatalyst by employing genetically encoded product sensors inside nanolitre reactors

被引:0
作者
Meyer, Andreas [1 ,2 ]
Pellaux, Rene [1 ,2 ]
Potot, Sebastien [3 ]
Becker, Katja [1 ]
Hohmann, Hans-Peter [3 ]
Panke, Sven [1 ]
Held, Martin [1 ]
机构
[1] Swiss Fed Inst Technol, Dept Biosyst Sci & Engn, CH-4058 Basel, Switzerland
[2] FGen GmbH, CH-4057 Basel, Switzerland
[3] DSM Nutr Prod, CH-4303 Kaiseraugst, Switzerland
关键词
BACILLUS-SUBTILIS; EVOLUTION; TRANSPORT; DESIGN; GENE; RIBOSWITCHES; EXPRESSION; SELECTION;
D O I
10.1038/NCHEM.2301
中图分类号
O6 [化学];
学科分类号
0703 ;
摘要
Microcompartmentalization offers a high-throughput method for screening large numbers of biocatalysts generated from genetic libraries. Here we present a microcompartmentalization protocol for benchmarking the performance of whole-cell biocatalysts. Gel capsules served as nanolitre reactors (nLRs) for the cultivation and analysis of a library of Bacillus subtilis biocatalysts. The B. subtilis cells, which were co-confined with E. coli sensor cells inside the nLRs, converted the starting material cellobiose into the industrial product vitamin B2. Product formation triggered a sequence of reactions in the sensor cells: (1) conversion of B2 into flavin mononucleotide (FMN), (2) binding of FMN by a RNA riboswitch and (3) selfcleavage of RNA, which resulted in (4) the synthesis of a green fluorescent protein (GFP). The intensity of GFP fluorescence was then used to isolate B. subtilis variants that convert cellobiose into vitamin B2 with elevated efficiency. The underlying design principles of the assay are general and enable the development of similar protocols, which ultimately will speed up the optimization of whole-cell biocatalysts.
引用
收藏
页码:673 / 678
页数:6
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