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Published on: May 14, 2021
Specificity of miR-378a-5p targeting rodent fibronectin
Fengqiong Liu1, Qing Lv2, William W Du3
1Sunnybrook Research Institute, Sunnybrook Health Sciences Centre, Toronto, Canada; School of Public Health, Sun Yat-sen University, Guangzhou, PR China; Department of Laboratory Medicine and Pathobiology, University of Toronto, Toronto, Canada.
Abstract:
One criterion for microRNA identification is based on their conservation across species, and prediction of miRNA targets by empirical approaches using computational analysis relies on the presence of conservative mRNA 3'UTR. Because most miRNA target sites identified are highly conserved across different species, it is not clear whether miRNA targeting is species-specific. To predict miRNA targeting, we aligned all available fibronectin 3'UTRs and observed significant conservation of all 20 species. Twelve miRNAs were predicted to target most fibronectin 3'UTRs, but rodent fibronectin showed potential binding sites specific for five different miRNAs. One of them, the miR-378a-5p, contained a complete matching seed-region for all rodent fibronectin, which could not be found in any other species. We designed experiments to test whether the species-specific targeting possessed biological function and found that expression of miR-378a-5p decreased cancer cell proliferation, migration, and invasion, resulting in inhibition of tumor growth. Silencing fibronectin expression produced similar effects as miR-378a-5p, while transfection with a construct targeting miR-378-5p produced opposite results. Tumor formation assay showed that enhanced expression of fibronectin in the stromal tissues as a background environment suppressed tumor growth, while increased fibronectin expression inside the tumor cells promoted tumor growth. This was likely due to the different signaling direction, either inside-out or outside-in signal. Our results demonstrated that species-specific targeting by miRNA could also exert functional effects. Thus, one layer of regulation has been added to the complex network of miRNA signaling.
Insights
Species-specific microRNA targeting, like miR-378a-5p in rodents, can functionally impact cancer by regulating fibronectin. This finding adds a new layer to understanding microRNA signaling networks.
Area of Science:
- Molecular Biology
- Genetics
- Cancer Research
Background:
- MicroRNA (miRNA) identification often relies on cross-species conservation.
- The species-specificity of miRNA targeting remains unclear.
- Fibronectin 3'UTRs show significant conservation across 20 species.
Purpose of the Study:
- To investigate species-specific miRNA targeting of fibronectin.
- To determine the functional consequences of species-specific miRNA targeting in cancer.
Main Methods:
- Alignment of fibronectin 3'UTRs across 20 species.
- Computational prediction of miRNA binding sites.
- Experimental validation of miR-378a-5p targeting and function in cancer cells.
- In vivo tumor formation assays.
Main Results:
- Rodent fibronectin 3'UTRs exhibited unique binding sites for five miRNAs, including miR-378a-5p.
- miR-378a-5p expression inhibited cancer cell proliferation, migration, and invasion.
- Silencing fibronectin mimicked miR-378a-5p effects; targeting miR-378a-5p reversed them.
- Fibronectin's role in tumor growth depended on its cellular localization (stromal vs. tumor cells).
Conclusions:
- Species-specific miRNA targeting, exemplified by miR-378a-5p and fibronectin, exerts significant biological functions.
- This discovery introduces a novel regulatory layer within the complex miRNA signaling network.
- Understanding species-specific targeting is crucial for deciphering miRNA roles in disease.
