Title :
Design and performance of in vitro transcription rate regulatory circuits
Author :
Franco, Elisa ; Murray, Richard M.
Author_Institution :
Div. of Eng. & Appl. Sci., California Inst. of Technol., Pasadena, CA, USA
Abstract :
This paper proposes a synthetic in vitro circuit that aims at regulating the rate of RNA transcription through positive feedback interactions. This design is dual to a previously synthesized transcriptional rate regulator based on self-repression. Two DNA templates are designed to interact through their transcripts, creating cross activating feedback loops that will equate their transcription rates at steady state. A mathematical model is developed for this circuit, consisting of a set of ODEs derived from the mass action laws and Michaelis-Menten kinetics involving all the present chemical species. This circuit is then compared to its regulatory counterpart based on negative feedback. A global sensitivity analysis reveals the fundamental features of the two designs by evaluating their equilibrium response to changes in the most crucial parameters of the system.
Keywords :
DNA; biomolecular electronics; sensitivity analysis; DNA templates; Michaelis-Menten kinetics; RNA transcription; chemical species; cross activating feedback loops; equilibrium response; global sensitivity analysis; in vitro transcription rate regulatory circuits; mathematical model; negative feedback; positive feedback interactions; synthetic in vitro circuit; transcriptional rate regulator; Circuit synthesis; DNA; Feedback circuits; Feedback loop; In vitro; Kinetic theory; Mathematical model; RNA; Regulators; Steady-state;
Conference_Titel :
Decision and Control, 2008. CDC 2008. 47th IEEE Conference on
Conference_Location :
Cancun
Print_ISBN :
978-1-4244-3123-6
Electronic_ISBN :
0191-2216
DOI :
10.1109/CDC.2008.4739253