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A synthetic growth switch based on controlled expression of RNA polymerase.

Authors :
Izard, Jérôme
Gomez Balderas, Cindy DC
Ropers, Delphine
Lacour, Stephan
Song, Xiaohu
Yang, Yifan
Lindner, Ariel B
Geiselmann, Johannes
Jong, Hidde
Source :
Molecular Systems Biology; Nov2015, Vol. 11 Issue 11, pn/a-N.PAG, 16p
Publication Year :
2015

Abstract

The ability to control growth is essential for fundamental studies of bacterial physiology and biotechnological applications. We have engineered an Escherichia coli strain in which the transcription of a key component of the gene expression machinery, RNA polymerase, is under the control of an inducible promoter. By changing the inducer concentration in the medium, we can adjust the RNA polymerase concentration and thereby switch bacterial growth between zero and the maximal growth rate supported by the medium. We show that our synthetic growth switch functions in a medium-independent and reversible way, and we provide evidence that the switching phenotype arises from the ultrasensitive response of the growth rate to the concentration of RNA polymerase. We present an application of the growth switch in which both the wild-type E. coli strain and our modified strain are endowed with the capacity to produce glycerol when growing on glucose. Cells in which growth has been switched off continue to be metabolically active and harness the energy gain to produce glycerol at a twofold higher yield than in cells with natural control of RNA polymerase expression. Remarkably, without any further optimization, the improved yield is close to the theoretical maximum computed from a flux balance model of E. coli metabolism. The proposed synthetic growth switch is a promising tool for gaining a better understanding of bacterial physiology and for applications in synthetic biology and biotechnology. [ABSTRACT FROM AUTHOR]

Details

Language :
English
ISSN :
17444292
Volume :
11
Issue :
11
Database :
Complementary Index
Journal :
Molecular Systems Biology
Publication Type :
Academic Journal
Accession number :
111238288
Full Text :
https://doi.org/10.15252/msb.20156382