4.8 Article

Incoherent merger network for robust ratiometric gene expression response

Journal

NUCLEIC ACIDS RESEARCH
Volume 51, Issue 6, Pages 2963-2973

Publisher

OXFORD UNIV PRESS
DOI: 10.1093/nar/gkad087

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Ratiometric gene expression response is achieved in Escherichia coli bacteria using the incoherent merger network, where one input molecule activates the output protein and the other molecule activates an intermediate protein that enhances the output's degradation. The response is linear to the ratio of input molecules' levels and robust to global perturbations in cellular components.
A ratiometric response gives an output that is proportional to the ratio between the magnitudes of two inputs. Ratio computation has been observed in nature and is also needed in the development of smart probiotics and organoids. Here, we achieve ratiometric gene expression response in bacteria Escherichia coli with the incoherent merger network. In this network, one input molecule activates expression of the output protein while the other molecule activates an intermediate protein that enhances the output's degradation. When degradation rate is first order and faster than dilution, the output responds linearly to the ratio between the input molecules' levels over a wide range with R-2 close to 1. Response sensitivity can be quantitatively tuned by varying the output's translation rate. Furthermore, ratiometric responses are robust to global perturbations in cellular components that influence gene expression because such perturbations affect the output through an incoherent feedforward loop. This work demonstrates a new molecular signal processing mechanism for multiplexed sense-and-respond circuits that are robust to intra-cellular context.

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