A synthetic gene–metabolic oscillator
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- 5 May 2005
- journal article
- research article
- Published by Springer Nature in Nature
- Vol. 435 (7038), 118-122
- https://doi.org/10.1038/nature03508
Abstract
Autonomous oscillations found in gene expression and metabolic, cardiac and neuronal systems1,2,3,4 have attracted significant attention both because of their obvious biological roles and their intriguing dynamics. In addition, de novo designed5,6,7,8,9,10,11,12 oscillators13,14 have been demonstrated, using components that are not part of the natural oscillators. Such oscillators are useful in testing the design principles and in exploring potential applications not limited by natural cellular behaviour15. To achieve transcriptional and metabolic integration characteristic of natural oscillators, here we designed and constructed a synthetic circuit in Escherichia coli K12, using glycolytic flux to generate oscillation through the signalling metabolite acetyl phosphate. If two metabolite pools are interconverted by two enzymes that are placed under the transcriptional control of acetyl phosphate, the system oscillates when the glycolytic rate exceeds a critical value. We used bifurcation analysis to identify the boundaries of oscillation, and verified these experimentally. This work demonstrates the possibility of using metabolic flux as a control factor in system-wide oscillation, as well as the predictability of a de novo gene–metabolic circuit designed using nonlinear dynamic analysis.Keywords
This publication has 31 references indexed in Scilit:
- Reciprocal regulation of haem biosynthesis and the circadian clock in mammalsNature, 2004
- Programmed population control by cell–cell communication and regulated killingNature, 2004
- Development of Genetic Circuitry Exhibiting Toggle Switch or Oscillatory Behavior in Escherichia coliCell, 2003
- Metabolism and the Control of Circadian RhythmsAnnual Review of Biochemistry, 2002
- Combinatorial Synthesis of Genetic NetworksScience, 2002
- Conditional-Replication, Integration, Excision, and Retrieval Plasmid-Host Systems for Gene Structure-Function Studies of BacteriaJournal of Bacteriology, 2001
- Regulation of Clock and NPAS2 DNA Binding by the Redox State of NAD CofactorsScience, 2001
- How Yeast Cells Synchronize their Glycolytic Oscillations: A Perturbation Analytic TreatmentBiophysical Journal, 2000
- Control analysis of glycolytic oscillationsBiophysical Chemistry, 1996
- Elementary Stability and Bifurcation Theory.The American Mathematical Monthly, 1983