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Assessment of Selective mRNA Translation in Mammalian Cells by Polysome Profiling
Published on: October 28, 2014
The Enrichment of miRNA-Targeted mRNAs in Translationally Less Active over More Active Polysomes
Tingzeng Wang1, Shuangmei Tian1, Elena B Tikhonova2
1Department of Environmental Toxicology, and The Institute of Environmental and Human Health (TIEHH), Texas Tech University, Lubbock, TX 79416, USA.
Abstract:
miRNAs moderately inhibit the translation and enhance the degradation of their target mRNAs via cognate binding sites located predominantly in the 3'-untranslated regions (UTR). Paradoxically, miRNA targets are also polysome-associated. We studied the polysome association by the comparative translationally less-active light- and more-active heavy-polysome profiling of a wild type (WT) human cell line and its isogenic mutant (MT) with a disrupted DICER1 gene and, thus, mature miRNA production. As expected, the open reading frame (ORF) length is a major determinant of light- to heavy-polysome mRNA abundance ratios, but is rendered less powerful in WT than in MT cells by miRNA-regulatory activities. We also observed that miRNAs tend to target mRNAs with longer ORFs, and that adjusting the mRNA abundance ratio with the ORF length improves its correlation with the 3'-UTR miRNA-binding-site count. In WT cells, miRNA-targeted mRNAs exhibit higher abundance in light relative to heavy polysomes, i.e., light-polysome enrichment. In MT cells, the DICER1 disruption not only significantly abrogated the light-polysome enrichment, but also narrowed the mRNA abundance ratio value range. Additionally, the abrogation of the enrichment due to the DICER1 gene disruption, i.e., the decreases of the ORF-length-adjusted mRNA abundance ratio from WT to MT cells, exhibits a nearly perfect linear correlation with the 3'-UTR binding-site count. Transcription factors and protein kinases are the top two most enriched mRNA groups. Taken together, the results provide evidence for the light-polysome enrichment of miRNA-targeted mRNAs to reconcile polysome association and moderate translation inhibition, and that ORF length is an important, though currently under-appreciated, transcriptome regulation parameter.
Insights
MicroRNAs (miRNAs) target mRNAs for translation inhibition and degradation. This study reveals that miRNA-targeted mRNAs show enrichment in light polysomes, reconciling their association with translation and inhibition.
Area of Science:
- Molecular Biology
- Gene Regulation
- Post-transcriptional Regulation
Background:
- MicroRNAs (miRNAs) are key regulators of gene expression, primarily acting by inhibiting translation and promoting mRNA degradation through binding sites in the 3'-untranslated region (UTR).
- Despite their inhibitory role, miRNA targets are paradoxically found associated with polysomes, the cellular machinery for active translation.
Purpose of the Study:
- To investigate the polysome association of miRNA targets and reconcile the apparent paradox of their association with translation machinery.
- To elucidate the role of open reading frame (ORF) length and miRNA binding sites in regulating mRNA polysome distribution.
Main Methods:
- Comparative light- and heavy-polysome profiling of wild-type (WT) human cells and isogenic mutant (MT) cells lacking mature miRNA production due to DICER1 gene disruption.
- Analysis of mRNA abundance ratios across polysome fractions in relation to ORF length and 3'-UTR miRNA-binding-site counts.
Main Results:
- miRNA activity reduces the influence of ORF length on mRNA abundance ratios between light and heavy polysomes.
- miRNA-targeted mRNAs exhibit enrichment in light polysomes (light-polysome enrichment) in WT cells, which is abrogated in DICER1-deficient MT cells.
- The degree of light-polysome enrichment reduction in MT cells strongly correlates with the number of 3'-UTR miRNA-binding sites, with transcription factors and protein kinases being highly enriched mRNA groups.
Conclusions:
- The findings support the model of light-polysome enrichment for miRNA-targeted mRNAs, explaining their polysome association alongside translation inhibition.
- Open reading frame (ORF) length is identified as a significant, yet underappreciated, regulatory parameter in transcriptome regulation by miRNAs.
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