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Updated: Mar 2, 2026

Measurement of Specific Mycobacterial Mistranslation Rates with Gain-of-function Reporter Systems
Published on: April 26, 2019
NMD monitors translational fidelity 24/7
Alper Celik1, Feng He1, Allan Jacobson2
1Department of Microbiology and Physiological Systems, University of Massachusetts Medical School, 368 Plantation Street, Worcester, MA, 01655, USA.
Abstract:
Nonsense-mediated mRNA decay (NMD) is generally thought to be a eukaryotic mRNA surveillance pathway tasked with the elimination of transcripts harboring an in-frame premature termination codon (PTC). As presently conceived, NMD acting in this manner minimizes the likelihood that potentially toxic polypeptide fragments would accumulate in the cytoplasm. This notion is to be contrasted to the results of systematic RNA-Seq and microarray analyses of NMD substrates in multiple model systems, two different experimental approaches which have shown that many mRNAs identified as NMD substrates fail to contain a PTC. Our recent results provide insight into, as well as a possible solution for, this conundrum. By high-resolution profiling of mRNAs that accumulate in yeast when the principal NMD regulatory genes (UPF1, UPF2, and UPF3) are deleted, we identified approximately 900 NMD substrates, the majority of which are normal-looking mRNAs that lack PTCs. Analyses of ribosomal profiling data revealed that the latter mRNAs tended to manifest elevated rates of out-of-frame translation, a phenomenon that would lead to premature translation termination in alternative reading frames. These results, and related observations of heterogeneity in mRNA isoforms, suggest that NMD should be reconsidered as a probabilistic mRNA quality control pathway that is continually active throughout an mRNA's life cycle.
Insights
Nonsense-mediated mRNA decay (NMD) typically removes faulty mRNAs with premature stop codons. However, new research shows NMD also targets normal mRNAs, suggesting a broader role in regulating gene expression.
Area of Science:
- Molecular Biology
- Genetics
- Cell Biology
Background:
- Nonsense-mediated mRNA decay (NMD) is a conserved eukaryotic surveillance pathway.
- NMD is primarily known for eliminating mRNAs with premature termination codons (PTCs).
- This function prevents the accumulation of potentially toxic truncated proteins.
Purpose of the Study:
- To investigate the full spectrum of NMD substrates.
- To resolve the discrepancy between the known function of NMD and observed NMD targets.
- To propose a revised model for NMD's role in mRNA regulation.
Main Methods:
- High-resolution mRNA profiling in yeast lacking key NMD factors (UPF1, UPF2, UPF3).
- Systematic RNA-Seq and microarray analyses of NMD substrates.
- Ribosomal profiling to assess translation dynamics of NMD targets.
Main Results:
- Approximately 900 NMD substrates were identified in yeast lacking NMD factors.
- The majority of identified NMD substrates lack premature termination codons (PTCs).
- These PTC-lacking NMD targets exhibit increased rates of out-of-frame translation, leading to premature termination.
Conclusions:
- NMD targets extend beyond mRNAs with PTCs.
- Out-of-frame translation and mRNA isoform heterogeneity contribute to NMD substrate recognition.
- NMD functions as a probabilistic quality control pathway throughout the mRNA lifecycle, not solely for PTCs.
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