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Uridylation prevents 3' trimming of oligoadenylated mRNAs
François Michaël Sement1, Emilie Ferrier, Hélène Zuber
1Institut de Biologie Moléculaire des Plantes, Centre National de la Recherche Scientifique (CNRS), Université de Strasbourg, 12 rue du général Zimmer, 67084 Strasbourg Cedex, France.
Abstract:
Degradation of mRNAs is usually initiated by deadenylation, the shortening of long poly(A) tails to oligo(A) tails of 12-15 As. Deadenylation leads to decapping and to subsequent 5' to 3' degradation by XRN proteins, or alternatively 3' to 5' degradation by the exosome. Decapping can also be induced by uridylation as shown for the non-polyadenylated histone mRNAs in humans and for several mRNAs in Schizosaccharomyces pombe and Aspergillus nidulans. Here we report a novel role for uridylation in preventing 3' trimming of oligoadenylated mRNAs in Arabidopsis. We show that oligo(A)-tailed mRNAs are uridylated by the cytosolic UTP:RNA uridylyltransferase URT1 and that URT1 has no major impact on mRNA degradation rates. However, in absence of uridylation, oligo(A) tails are trimmed, indicating that uridylation protects oligoadenylated mRNAs from 3' ribonucleolytic attacks. This conclusion is further supported by an increase in 3' truncated transcripts detected in urt1 mutants. We propose that preventing 3' trimming of oligo(A)-tailed mRNAs by uridylation participates in establishing the 5' to 3' directionality of mRNA degradation. Importantly, uridylation prevents 3' shortening of mRNAs associated with polysomes, suggesting that a key biological function of uridylation is to confer 5' to 3' polarity in case of co-translational mRNA decay.
Insights
Uridylation, mediated by UTP:RNA uridylyltransferase 1 (URT1), prevents 3' trimming of oligo(A)-tailed mRNAs in Arabidopsis. This uridylation protects mRNAs from degradation, ensuring 5' to 3' polarity during decay.
Area of Science:
- Molecular Biology
- RNA Metabolism
- Plant Science
Background:
- mRNA degradation is crucial for gene regulation.
- Deadenylation shortens poly(A) tails, initiating decay.
- Uridylation can induce decapping but its role in decay directionality was unclear.
Purpose of the Study:
- To investigate the role of uridylation in mRNA degradation in Arabidopsis.
- To determine if uridylation affects the stability or processing of oligoadenylated mRNAs.
- To elucidate the function of UTP:RNA uridylyltransferase 1 (URT1) in mRNA decay.
Main Methods:
- Analysis of mRNA degradation pathways in Arabidopsis.
- Identification of URT1 as the enzyme responsible for uridylation of oligo(A)-tailed mRNAs.
- Assessment of mRNA degradation rates and transcript integrity in wild-type and urt1 mutant plants.
Main Results:
- URT1 uridylates oligo(A)-tailed mRNAs without significantly altering degradation rates.
- In urt1 mutants, oligo(A) tails are trimmed, leading to 3' truncated transcripts.
- Uridylation protects oligoadenylated mRNAs from 3' ribonucleolytic attack.
Conclusions:
- Uridylation prevents 3' trimming of oligo(A)-tailed mRNAs in Arabidopsis.
- This protection by uridylation contributes to the 5' to 3' directionality of mRNA degradation.
- Uridylation confers 5' to 3' polarity, particularly during co-translational mRNA decay.
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