2017 · 41 citations · 14 references
EngineeringMolecular BiologySynthetic CircuitProtein ExpressionBioenergeticsIntegral ControllerController TuningBiomolecular InteractionIntegrated ControlRobust Tunable RegulationBiomolecular EngineeringFeedforward ControlSignal TransductionBiotechnologyProcess ControlSynthetic BiologyMicrobiologyIntegral Feedback ImplementationMedicineLiving CellFeed Forward (Control)
Abstract We report on the first engineered integral feedback control system in a living cell. The controller is based on the recently published antithetic integral feedback motif [1] which has been analytically shown to have favorable regulation properties. It is implemented along with test circuitry in Escherichia coli using seven genes and three small-molecule inducers. The closed-loop system is highly tunable, allowing a regulated protein of interest to be driven to a desired level and maintained there with precision. Realized using a sigma/anti-sigma protein pair, the integral controller ensures that regulation is maintained in the face of perturbations that lead to the regulated protein’s degradation, thus serving as a proof-of-concept prototype of integral feedback implementation in living cells. When suitably optimized, this integral controller may be utilized as a general-purpose robust regulator for genetic circuits with unknown or partially-known topologies and parameters.
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Norbert Wiener · Scientific American · 1948 · 395 citations
A Systems-Level Analysis of Perfect Adaptation in Yeast Osmoregulation
Dale Muzzey, Carlos Alberto Gomez-Uribe, Jerome T. Mettetal et al. · Cell · 2009 · 378 citations · Full text
Biology, Bioenergetics, Yeast +2