Programming the dynamics of biochemical reaction networks.
Level V
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- Record sourced from PubMed, PMID 23297647.
- Also identified by DOI 10.1021/nn305811d.
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Abstract
The development of complex self-organizing molecular systems for future nanotechnology requires not only robust formation of molecular structures by self-assembly but also precise control over their temporal dynamics. As an exquisite example of such control, in this issue of ACS Nano, Fujii and Rondelez demonstrate a particularly compact realization of a molecular "predator-prey" ecosystem consisting of only three DNA species and three enzymes. The system displays pronounced oscillatory dynamics, in good agreement with the predictions of a simple theoretical model. Moreover, its considerable modularity also allows for ecological studies of competition and cooperation within molecular networks.
Medical subject headings
- Biopolymers
- Ecosystem
- Models, Biological
- Population Dynamics
- Predatory Behavior