Revisiting T7 RNA Polymerase Transcription In vitro with the Broccoli RNA Aptamer As a Simplified Real-time Fluorescent Reporter
Overview
Affiliations
Methods for rapid and high-throughput screening of transcription in vitro to examine reaction conditions, enzyme mutants, promoter variants, and small molecule modulators can be extremely valuable tools. However, these techniques may be difficult to establish or inaccessible to many researchers. To develop a straightforward and cost-effective platform for assessing transcription in vitro, we used the "Broccoli" RNA aptamer as a direct, real-time fluorescent transcript readout. To demonstrate the utility of our approach, we screened the effect of common reaction conditions and components on bacteriophage T7 RNA polymerase (RNAP) activity using a common quantitative PCR instrument for fluorescence detection. Several essential conditions for in vitro transcription by T7 RNAP were confirmed with this assay, including the importance of enzyme and substrate concentrations, covariation of magnesium and nucleoside triphosphates, and the effects of several typical additives. When we used this method to assess all possible point mutants of a canonical T7 RNAP promoter, our results coincided well with previous reports. This approach should translate well to a broad variety of bacteriophage in vitro transcription systems and provides a platform for developing fluorescence-based readouts of more complex transcription systems in vitro.
An HIV-1 Reference Epitranscriptome.
Bosmeny M, Pater A, Zhang L, Sha B, Lyu Z, Larkai L bioRxiv. 2025; .
PMID: 39975020 PMC: 11838527. DOI: 10.1101/2025.01.30.635805.
Challenges in observing transcription-translation for bottom-up synthetic biology.
Bogatyr V, Wuite G QRB Discov. 2025; 6:e5.
PMID: 39944880 PMC: 11811876. DOI: 10.1017/qrd.2024.27.
HPLC for at-line reaction monitoring and purification improves yield and purity of tRNA.
Megusar P, Calder E, Vodopivec Seravalli T, Lebar S, Walport L, Sekirnik R Front Mol Biosci. 2024; 11:1443917.
PMID: 39398276 PMC: 11466894. DOI: 10.3389/fmolb.2024.1443917.
Liu Y, Wang J, Wu Y, Wang Y Chem Sci. 2024; 15(31):12534-12542.
PMID: 39118620 PMC: 11304824. DOI: 10.1039/d4sc02904f.
Rapid protein evolution by few-shot learning with a protein language model.
Jiang K, Yan Z, Di Bernardo M, Sgrizzi S, Villiger L, Kayabolen A bioRxiv. 2024; .
PMID: 39071429 PMC: 11275896. DOI: 10.1101/2024.07.17.604015.