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A synthetic differentiation circuit in Escherichia coli for suppressing mutant takeover

Cell. 2024-01; 
David S Glass 1, Anat Bren 2, Elizabeth Vaisbourd 2, Avi Mayo 2, Uri Alon
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摘要

Differentiation is crucial for multicellularity. However, it is inherently susceptible to mutant cells that fail to differentiate. These mutants outcompete normal cells by excessive self-renewal. It remains unclear what mechanisms can resist such mutant expansion. Here, we demonstrate a solution by engineering a synthetic differentiation circuit in Escherichia coli that selects against these mutants via a biphasic fitness strategy. The circuit provides tunable production of synthetic analogs of stem, progenitor, and differentiated cells. It resists mutations by coupling differentiation to the production of an essential enzyme, thereby disadvantaging non-differentiating mutants. The circuit selected for and main... More

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