Related Experiment Video
Updated: May 8, 2026

Adapting 3' Rapid Amplification of CDNA Ends to Map Transcripts in Cancer
Published on: March 28, 2018
A faux 3'-UTR promotes aberrant termination and triggers nonsense-mediated mRNA decay
Nadia Amrani1, Robin Ganesan, Stephanie Kervestin
1Department of Molecular Genetics and Microbiology, University of Massachusetts Medical School, Worcester, Massachusetts 01655-0122, USA.
Abstract:
Nonsense-mediated messenger RNA decay (NMD) is triggered by premature translation termination, but the features distinguishing premature from normal termination are unknown. One model for NMD suggests that decay-inducing factors bound to mRNAs during early processing events are routinely removed by elongating ribosomes but remain associated with mRNAs when termination is premature, triggering rapid turnover. Recent experiments challenge this notion and suggest a model that posits that mRNA decay is activated by the intrinsically aberrant nature of premature termination. Here we use a primer extension inhibition (toeprinting) assay to delineate ribosome positioning and find that premature translation termination in yeast extracts is indeed aberrant. Ribosomes encountering premature UAA or UGA codons in the CAN1 mRNA fail to release and, instead, migrate to upstream AUGs. This anomaly depends on prior nonsense codon recognition and is eliminated in extracts derived from cells lacking the principal NMD factor, Upf1p, or by flanking the nonsense codon with a normal 3'-untranslated region (UTR). Tethered poly(A)-binding protein (Pab1p), used as a mimic of a normal 3'-UTR, recruits the termination factor Sup35p (eRF3) and stabilizes nonsense-containing mRNAs. These findings indicate that efficient termination and mRNA stability are dependent on a properly configured 3'-UTR.
Insights
Nonsense-mediated decay (NMD) is triggered by premature translation termination. Aberrant ribosome behavior at premature stop codons, dependent on 3'-UTR configuration, influences mRNA stability.
Area of Science:
- Molecular Biology
- Genetics
- RNA Biology
Background:
- Nonsense-mediated messenger RNA decay (NMD) removes aberrant transcripts.
- The precise mechanisms distinguishing premature from normal translation termination remain unclear.
- Current models debate whether decay factors or termination abnormalities trigger NMD.
Purpose of the Study:
- To investigate ribosome behavior at premature termination codons.
- To elucidate the role of the 3 -untranslated region (UTR) in NMD regulation.
- To understand the molecular basis of mRNA surveillance.
Main Methods:
- Primer extension inhibition (toeprinting) assay to map ribosome positions.
- Analysis of yeast extracts with and without key NMD factors (Upf1p).
- Experiments using tethered poly(A)-binding protein (Pab1p) to mimic 3 -UTR function.
Main Results:
- Premature termination codons (UAA, UGA) cause ribosome stalling and upstream migration in yeast extracts.
- This aberrant ribosome behavior is dependent on nonsense codon recognition.
- The anomaly is resolved by removing the NMD factor Upf1p or by providing a functional 3 -UTR mimic (Pab1p).
Conclusions:
- Premature translation termination is inherently aberrant.
- Efficient termination and mRNA stability rely on proper 3 -UTR configuration.
- The 3 -UTR plays a critical role in recruiting termination factors and stabilizing transcripts.
Related Concept Videos
Nuclear Export of mRNA
Nonsense-mediated mRNA Decay
Usually, Upf3 binds to an Exon Junction Complex (EJC) at mRNA splice sites. If a ribosome fully translates the mRNA,...
mRNA Stability and Gene Expression
Cis-acting Elements involved in mRNA stability
Nuclear Export of mRNA
Nonsense-mediated mRNA Decay
Usually, Upf3 binds to an Exon Junction Complex (EJC) at mRNA splice sites. If a ribosome fully translates the mRNA,...
mRNA Stability and Gene Expression
Cis-acting Elements involved in mRNA stability

