Unlocking the Strength of Inducible Promoters in Gram-negative Bacteria
Overview
Affiliations
Inducible bacterial promoters are ubiquitous biotechnology tools that have a consistent architecture including two key elements: the operator region recognized by the transcriptional regulatory proteins, and the -10 and -35 consensus sequences required to recruit the sigma (σ) 70 subunits of RNA polymerase to initiate transcription. Despite their widespread use, leaky transcription in the OFF state remains a challenge. We have updated the architecture of the lac and tet promoters to improve their strength, control and portability by the adaptation of the consensus -10 and -35 sequence boxes strongly targeted by σ , incorporation of a strong ribosome binding site recognized broadly by Gram-negative bacteria, and independent control of the transcriptional regulators by constitutive promoters. To test the promoters, we use the far-red fluorescent protein mCardinal, which significantly improves the signal-to-background ratio of promoter measurements over widely utilized green fluorescent proteins. We validate the improvement in OFF state control and inducibility by demonstrating production of the toxic and aggregate-prone cocaine esterase enzyme CocE. We further demonstrate portability of the promoters to additional Gram-negative species Pseudomonas putida and Vibrio natriegens. Our results represent a significant improvement over existing protein expression systems that will enable advances in protein production for various biotechnology applications.
AND Logic Based on Suppressor tRNAs Enables Stringent Control of Sliding Base Editors in .
Velazquez E, de Lorenzo V ACS Synth Biol. 2024; 13(12):4191-4201.
PMID: 39660532 PMC: 11669171. DOI: 10.1021/acssynbio.4c00640.
A dual-inducible control system for multistep biosynthetic pathways.
Carrillo Rincon A, Cabral A, Gyorgy A, Farny N J Biol Eng. 2024; 18(1):68.
PMID: 39568033 PMC: 11580509. DOI: 10.1186/s13036-024-00462-z.
Promoters in Pichia pastoris: A Toolbox for Fine-Tuned Gene Expression.
Arjmand S Methods Mol Biol. 2024; 2844:159-178.
PMID: 39068339 DOI: 10.1007/978-1-0716-4063-0_11.
Rapid, high-titer biosynthesis of melanin using the marine bacterium .
Smith A, Tschirhart T, Compton J, Hennessa T, VanArsdale E, Wang Z Front Bioeng Biotechnol. 2023; 11:1239756.
PMID: 37781538 PMC: 10534004. DOI: 10.3389/fbioe.2023.1239756.
Unlocking the strength of inducible promoters in Gram-negative bacteria.
Carrillo Rincon A, Farny N Microb Biotechnol. 2023; 16(5):961-976.
PMID: 36738130 PMC: 10128130. DOI: 10.1111/1751-7915.14219.