Aug 2026· Bio-protocol· Vol 16· 0 citations· 43 references
Medicine
TL;DR
A cell-free protocol to quantitatively assess cap-independent translation using wheat germ extract and a firefly luciferase (FLuc) reporter is described, suitable for testing combinations of IRES and CDS.
Abstract
Efficient protein synthesis in eukaryotic cells typically requires a 5′ cap structure on messenger RNAs (mRNAs). However, under stress conditions or in viral infection, translation can also occur independently of the cap via internal ribosomal entry sites (IRES). IRES elements are therefore key regulators of protein expression in both viral and cellular contexts. Here, we describe a cell-free protocol to quantitatively assess cap-independent translation using wheat germ extract (WGE) and a firefly luciferase (FLuc) reporter. The protocol includes template preparation, RNA synthesis, and luminescence measurement following in vitro translation in WGE. This method enables rapid and robust comparison of translation activity under controlled conditions and can additionally be applied to evaluate mRNA modifications designed to enhance translation efficiency. Key features • Stringent in vitro workflow from DNA template preparation through RNA synthesis and protein synthesis to reporter readout, including quality controls. • Evaluation of cap-independent translation suitable for testing combinations of IRES and CDS. • Translation analysis without radioactive labeling.
The versatility of the assay is demonstrated and a 4-fold reduction in 5' cap concentration for in vitro transcription results in equivalent translation in cellulo, illustrating how split luminescent tagging can be easily integrated into the mRNA therapeutic workflow, enabling monitoring of real-time mRNA-driven protei...
C. Batho, Camilla Ascanelli, Megan L. Maple et al.· Journal of Visualized Experi...· 0 citations
Internal ribosome entry sites (IRESs) enable cap-independent translation but often exhibit low and variable efficiency, limiting their use in synthetic gene circuits. Here, we present a programmable strategy to enhance IRES-dependent translation by recruiting a truncated eIF4G scaffold via engineered RNA-binding prot...
It is proposed that MraW modification of 16S rRNA enhances translation efficiency in general, and that specific transcripts have evolved structural features that fine-tune protein levels that may be prevalent in bacteria which exhibit uncoupled transcription and translation.
Zachory M. Park, Christina R. Savage, Amanda R. Decker-Farrell et al.· Cell Reports· 0 citations
We present a robust and versatile in vitro transcription (IVT) assay based on an optimized Broccoli RNA aptamer sequence. When paired with the fluorophore DFHBI-1T, this system enables real-time monitoring of multi-round transcription over several hours. To facilitate streamlined promoter analysis, we developed the pIV...
Tina Lanzmaier, Elena Reiterer, Melanie Merl et al.· bioRxiv· 0 citations
Although HCL translated less protein than either WGE or RRL systems, it showed several advantages, notably a larger linear range and greater sensitivity to mRNA thermal stress and dsRNA impurities.
Benjamin W. Roose, Pankaj Dwivedi, Matthew Schombs· bioRxiv· 0 citations
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