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Rapidly characterizing the fast dynamics of RNA genetic circuitry with cell-free transcription–translation (TX-TL) systems SCIE SCOPUS

Title
Rapidly characterizing the fast dynamics of RNA genetic circuitry with cell-free transcription–translation (TX-TL) systems
Authors
TAKAHASHI, MELISSA KCHAPPELL, JAMESHAYES, CLARMYRA ASUN, ZACHARY ZKIM, JONGMINSINGHAL, VIPULAL-KHABOURI, SHAIMAFALL, CRISTOPHER PSPRING, KEVIN JNOIREAUX, VINCENTMURRAY, RICHARD MLUCKS, JULIUS B
Date Issued
2015-05
Publisher
AMER CHEMICAL SOC
Abstract
RNA regulators are emerging as powerful tools to engineer synthetic genetic networks or rewire existing ones. A potential strength of RNA networks is that they may be able to propagate signals on time scales that are set by the fast degradation rates of RNAs. However, a current bottleneck to verifying this potential is the slow design-build-test cycle of evaluating these networks in vivo. Here, we adapt an Escherichia coli-based cell-free transcription-translation (TX-TL) system for rapidly prototyping RNA networks. We used this system to measure the response time of an RNA transcription cascade to be approximately five minutes per step of the cascade. We also show that this response time can be adjusted with temperature and regulator threshold tuning. Finally, we use TX-TL to prototype a new RNA network, an RNA single input module, and show that this network temporally stages the expression of two genes in vivo.
Keywords
RNA genetic circuits; TX-TL; cell-free; response time; RNA synthetic biology
URI
https://oasis.postech.ac.kr/handle/2014.oak/92146
DOI
10.1021/sb400206c
ISSN
2161-5063
Article Type
Article
Citation
ACS Synthetic Biology, vol. 4, no. 5, page. 503 - 515, 2015-05
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