Robert C Brewster, Vinuselvi Parisutham
2026.1.3CURRENT OPINION IN MICROBIOLOGY
tlooto Summary
This review advances a context-minimized, measurement-first approach in E. coli that couples simple assays to a single transcription factor (TF)-based thermodynamic framework and provides a practical route to compiling desired regulatory specifications into sequence-level designs.
Abstract
Designing regulatable promoters with specified functional output remains difficult because natural promoters are unlikely to match a particular specification, and the sequence design space is large, complex, and challenging to interpret. This review advances a context-minimized, measurement-first approach in Escherichia coli that couples simple assays to a single transcription factor (TF)-based thermodynamic framework. The model is structured around two key concepts related to the TF: occupancy and function. Here, we outline how these concepts can be manipulated and measured at the level of DNA sequence and how those perturbations can impact fold-change and thus features of the promoter, such as dynamic range, leakiness, and sensitivity. LacI serves as a worked example in which sequence-occupancy, copy number, and competition, position-dependent function, and inducer allostery have been measured and can be combined to optimize response features. Overall, simple measurements linked to interpretable models provide a practical route to compiling desired regulatory specifications into sequence-level designs.
Citation format
BREWSTER, Robert C; PARISUTHAM, Vinuselvi. Model-guided design of regulatable promoters for synthetic biology. CURRENT OPINION IN MICROBIOLOGY, 2026, 89: 102701–102701.