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Published on: April 26, 2019
A chemiluminescence-based reporter system to monitor nonsense-mediated mRNA decay
Stephanie Boelz1, Gabriele Neu-Yilik, Niels H Gehring
1Molecular Medicine Partnership Unit, University of Heidelberg and European Molecular Biology Laboratory, Im Neuenheimer Feld 156, 69120 Heidelberg, Germany.
Abstract:
Nonsense-mediated mRNA decay (NMD) is a surveillance pathway that mediates rapid degradation of transcripts bearing premature translation termination codons (PTCs) and thereby limits the expression of unproductively processed mRNAs and the synthesis of C-terminally truncated peptides. Both its importance as a means to control gene expression and in the context of genetic and acquired human diseases call for an exploration of the mammalian NMD pathway using chemical biology approaches. Here, we describe a novel cell-based chemiluminescence reporter system that recapitulates the hallmark features of mammalian NMD. The assay is characterized by its high sensitivity, robustness, and its potential for automated handling. Limiting NMD efficiency by RNAi-mediated depletion of the essential NMD factor UPF1 markedly and specifically increased the NMD reporter mRNA level and resulted in a proportional increase in protein expression reflected by Renilla luminescence. The PI 3-kinase inhibitor wortmannin has previously been found to up-modulate PTC-containing transcripts by inhibiting the UPF1 kinase SMG1. Wortmannin treatment enhanced NMD reporter expression in our system in a dose-dependent way, illustrating its utility for small molecule screening.
Insights
Researchers developed a sensitive chemiluminescence reporter assay to study nonsense-mediated mRNA decay (NMD). This assay effectively measures NMD activity and can be used for screening small molecules that modulate this crucial gene regulation pathway.
Area of Science:
- Molecular Biology
- Cell Biology
- Biochemistry
Background:
- Nonsense-mediated mRNA decay (NMD) is a critical cellular surveillance pathway.
- NMD degrades aberrant mRNAs with premature translation termination codons (PTCs).
- Understanding NMD is vital for gene expression control and human diseases.
Purpose of the Study:
- To develop a novel cell-based chemiluminescence reporter system for mammalian NMD.
- To enable chemical biology approaches for exploring the NMD pathway.
- To facilitate high-throughput screening of small molecules targeting NMD.
Main Methods:
- Development of a novel chemiluminescence reporter assay.
- Utilized RNAi-mediated depletion of UPF1 to validate assay specificity.
- Employed the PI 3-kinase inhibitor wortmannin to demonstrate assay utility.
Main Results:
- The reporter system accurately recapitulates mammalian NMD features.
- UPF1 depletion led to a specific increase in reporter mRNA and protein levels.
- Wortmannin treatment showed a dose-dependent enhancement of reporter expression.
Conclusions:
- The developed reporter system is sensitive, robust, and suitable for automation.
- This assay is a valuable tool for studying NMD and screening modulators.
- Facilitates chemical biology exploration of the NMD pathway for therapeutic potential.
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