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Genetic circuit characterization and debugging using RNA-seq

Authors :
Alec Ak Nielsen
Jing Zhang
Thomas E. Gorochowski
Yongjin Park
Bryan S. Der
Christopher A. Voigt
D. Benjamin Gordon
Amin Espah Borujeni
Source :
Molecular Systems Biology, Gorochowski, T, Espah Borujeni, A, Park, Y, Nielsen, A, Zhang, J, Der, B, Gordon, D B & Voigt, C 2017, ' Genetic circuit characterization and debugging using RNA-seq ', Molecular Systems Biology, vol. 13, no. 11, 952 . https://doi.org/10.15252/msb.20167461
Publication Year :
2017

Abstract

Genetic circuits implement computational operations within a cell. Debugging them is difficult because their function is defined by multiple states (e.g., combinations of inputs) that vary in time. Here, we develop RNA‐seq methods that enable the simultaneous measurement of: (i) the states of internal gates, (ii) part performance (promoters, insulators, terminators), and (iii) impact on host gene expression. This is applied to a three‐input one‐output circuit consisting of three sensors, five NOR/NOT gates, and 46 genetic parts. Transcription profiles are obtained for all eight combinations of inputs, from which biophysical models can extract part activities and the response functions of sensors and gates. Various unexpected failure modes are identified, including cryptic antisense promoters, terminator failure, and a sensor malfunction due to media‐induced changes in host gene expression. This can guide the selection of new parts to fix these problems, which we demonstrate by using a bidirectional terminator to disrupt observed antisense transcription. This work introduces RNA‐seq as a powerful method for circuit characterization and debugging that overcomes the limitations of fluorescent reporters and scales to large systems composed of many parts.

Details

ISSN :
17444292
Volume :
13
Issue :
11
Database :
OpenAIRE
Journal :
Molecular systems biology
Accession number :
edsair.doi.dedup.....57153c730326bed7df2526c4845928dc
Full Text :
https://doi.org/10.15252/msb.20167461