Toward a Generalized and High-throughput Enzyme Screening System Based on Artificial Genetic Circuits

被引:60
|
作者
Choi, Su-Lim [1 ,4 ]
Rha, Eugene [1 ]
Lee, Sang Jun [2 ]
Kim, Haseong [1 ]
Kwon, Kilkoang [1 ]
Jeong, Young-Su [3 ]
Rhee, Young Ha [4 ]
Song, Jae Jun [5 ]
Kim, Hak-Sung [3 ]
Lee, Seung-Goo [1 ,6 ]
机构
[1] Korea Res Inst Biosci & Biotechnol, Biochem & Synthet Biol Res Ctr, Taejon, South Korea
[2] Korea Res Inst Biosci & Biotechnol, Infect & Immun Res Ctr, Taejon, South Korea
[3] Korea Adv Inst Sci & Technol, Dept Biol Sci, Taejon 305701, South Korea
[4] Chungnam Natl Univ, Dept Biosci & Biotechnol, Taejon, South Korea
[5] Korea Res Inst Biosci & Biotechnol, Appl Microbiol Res Ctr, Jeongeup Si, South Korea
[6] Univ Sci & Technol, Biosyst & Bioengn Program, Taejon, South Korea
来源
ACS SYNTHETIC BIOLOGY | 2014年 / 3卷 / 03期
关键词
genetic circuit; high-throughput screening; metagenome; enzyme screening; DmpR; phenolic compounds; TYROSINE PHENOL-LYASE; TRANSCRIPTIONAL ACTIVATOR; ESCHERICHIA-COLI; REGULATOR DMPR; IDENTIFICATION; BIOCATALYSTS;
D O I
10.1021/sb400112u
中图分类号
Q5 [生物化学];
学科分类号
071010 ; 081704 ;
摘要
Large-scale screening of enzyme libraries is essential for the development of cost-effective biological processes, which will be indispensable for the production of sustainable biobased chemicals. Here, we introduce a genetic circuit termed the Genetic Enzyme Screening System that is highly useful for high-throughput enzyme screening from diverse microbial metagenomes. The circuit consists of two AND logics. The first AND logic, the two inputs of which are the target enzyme and its substrate, is responsible for the accumulation of a phenol compound in cell. Then, the phenol compound and its inducible transcription factor, whose activation turns on the expression of a reporter gene, interact in the other logic gate. We confirmed that an individual cell harboring this genetic circuit can present approximately a 100-fold higher cellular fluorescence than the negative control and can be easily quantified by flow cytometry depending on the amounts of phenolic derivatives. The high sensitivity of the genetic circuit enables the rapid discovery of novel enzymes from metagenomic libraries, even for genes that show marginal activities in a host system. The crucial feature of this approach is that this single system can be used to screen a variety of enzymes that produce a phenol compound from respective synthetic phenyl-substrates, including cellulase, lipase, alkaline phosphatase, tyrosine phenol-lyase, and methyl parathion hydrolase. Consequently, the highly sensitive and quantitative nature of this genetic circuit along with flow cytometry techniques could provide a widely applicable toolkit for discovering and engineering novel enzymes at a single cell level.
引用
收藏
页码:163 / 171
页数:9
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