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Artificial Caprolactam-Specific Riboswitch as an Intracellular Metabolite Sensor

Authors
Jang, SungyeonJang, SunghoIm, Dae-KyunKang, Taek JinOh, Min-KyuJung, Gyoo Yeol
Issue Date
6월-2019
Publisher
AMER CHEMICAL SOC
Keywords
caprolactam; riboswitch; SELEX; metabolite biosensor; high-throughput screening
Citation
ACS SYNTHETIC BIOLOGY, v.8, no.6, pp.1276 - 1283
Indexed
SCIE
SCOPUS
Journal Title
ACS SYNTHETIC BIOLOGY
Volume
8
Number
6
Start Page
1276
End Page
1283
URI
https://scholar.korea.ac.kr/handle/2021.sw.korea/65237
DOI
10.1021/acssynbio.8b00452
ISSN
2161-5063
Abstract
Caprolactam is a monomer used for the synthesis of nylon-6, and a recombinant microbial strain for biobased production of nylon-6 was recently developed. An intracellular biosensor for caprolactam can facilitate high throughput metabolic engineering of recombinant microbial strains. Because of the mixed production of caprolactam and valerolactam in the recombinant strain, a caprolactam biosensor should be highly specific for caprolactam. However, a highly specific caprolactam sensor has not been reported. Here, we developed an artificial riboswitch that specifically responds to caprolactam. This riboswitch was prepared using a coupled in vitro in vivo selection strategy with a heterogeneous pool of RNA aptamers obtained from in vitro selection to construct a riboswitch library used in in vivo selection. The caprolactam riboswitch successfully discriminated caprolactam from valerolactam. Moreover, the riboswitch was activated by 3.36-fold in the presence of 50 mM caprolactam. This riboswitch enabled caprolactam-dependent control of cell growth, which will be useful for improving caprolactam production and is a valuable tool for metabolic engineering.
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