A synthetic microbial biosensor for highthroughput screening of lactam biocatalysts

Cited 84 time in scopus
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Title
A synthetic microbial biosensor for highthroughput screening of lactam biocatalysts
Author(s)
Soo Jin Yeom; Moonjeong Kim; Kil Koang Kwon; Y Fu; Eugene Rha; Sung-Hyun Park; Hyewon LeeHaseong KimDae-Hee Lee; D M Kim; Seung Goo Lee
Bibliographic Citation
Nature Communications, vol. 9, pp. 5053-5053
Publication Year
2018
Abstract
Biocatalytic cyclization is highly desirable for efficient synthesis of biologically derived chemical substances, such as the commodity chemicals ε-caprolactam and δ-valerolactam. To identify biocatalysts in lactam biosynthesis, we develop a caprolactam-detecting genetic enzyme screening system (CL-GESS). The Alcaligenes faecalis regulatory protein NitR is adopted for the highly specific detection of lactam compounds against lactam biosynthetic intermediates. We further systematically optimize the genetic components of the CL-GESS to enhance sensitivity, achieving 10-fold improvement. Using this highly sensitive GESS, we screen marine metagenomes and find an enzyme that cyclizes ω-amino fatty acids to lactam. Moreover, we determine the X-ray crystal structure and catalytic residues based on mutational analysis of the cyclase. The cyclase is also used as a helper enzyme to sense intracellular ω-amino fatty acids. We expect this simple and accurate biosensor to have wide-ranging applications in rapid screening of new lactam-synthesizing enzymes and metabolic engineering for lactam bio-production.
ISSN
2041-1723
Publisher
Springer-Nature Pub Group
Full Text Link
http://dx.doi.org/10.1038/s41467-018-07488-0
Type
Article
Appears in Collections:
Korea Biofoundry > 1. Journal Articles
Synthetic Biology and Bioengineering Research Institute > Synthetic Biology Research Center > 1. Journal Articles
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