bioRxiv · 10.1101/428300
Architectural Principles for Characterizing the Performance of Sequestration Feedback Networks
Abstract
As we begin to design increasingly complex synthetic biomolecular systems, it is essential to develop rational design methodologies that yield predictable circuit performance. Here we apply theoretical tools from the theory of control and dynamical systems to yield practical insights into the architecture and function of a particular class of biological feedback circuit. Specifically, we show that it is possible to analytically characterize both the operating regime and performance tradeoffs of a sequestration feedback circuit architecture. Further, we demonstrate how these principles can be applied to inform the design process of a particular synthetic feedback circuit.
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Olsman, N., Xiao, F., Doyle, J. C.. 2018-09-27. Architectural Principles for Characterizing the Performance of Sequestration Feedback Networks. https://doi.org/10.1101/428300
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