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Updated: Jul 4, 2025

Using the E1A Minigene Tool to Study mRNA Splicing Changes
Published on: April 22, 2021
RAVER1 hinders lethal EMT and modulates miR/RISC activity by the control of alternative splicing
Alice Wedler1, Nadine Bley1, Markus Glaß1
1Institute of Molecular Medicine, Section for Molecular Cell Biology, Faculty of Medicine, Martin Luther University Halle-Wittenberg, 06120 Halle (Saale), Germany.
Abstract:
The RAVER1 protein serves as a co-factor in guiding the polypyrimidine tract-binding protein (PTBP)-dependent control of alternative splicing (AS). Whether RAVER1 solely acts in concert with PTBPs and how it affects cancer cell fate remained elusive. Here, we provide the first comprehensive investigation of RAVER1-controlled AS in cancer cell models. This reveals a pro-oncogenic role of RAVER1 in modulating tumor growth and epithelial-mesenchymal-transition (EMT). Splicing analyses and protein-association studies indicate that RAVER1 guides AS in association with other splicing regulators, including PTBPs and SRSFs. In cancer cells, one major function of RAVER1 is the stimulation of proliferation and restriction of apoptosis. This involves the modulation of AS events within the miR/RISC pathway. Disturbance of RAVER1 impairs miR/RISC activity resulting in severely deregulated gene expression, which promotes lethal TGFB-driven EMT. Among others, RAVER1-modulated splicing events affect the insertion of protein interaction modules in factors guiding miR/RISC-dependent gene silencing. Most prominently, in all three human TNRC6 proteins, RAVER1 controls AS of GW-enriched motifs, which are essential for AGO2-binding and the formation of active miR/RISC complexes. We propose, that RAVER1 is a key modulator of AS events in the miR/RISC pathway ensuring proper abundance and composition of miR/RISC effectors. This ensures balanced expression of TGFB signaling effectors and limits TGFB induced lethal EMT.
Insights
RAVER1 protein controls alternative splicing (AS) in cancer, promoting tumor growth and epithelial-mesenchymal-transition (EMT). It modulates the miR/RISC pathway, impacting gene expression and limiting lethal EMT.
Area of Science:
- Molecular Biology
- Cancer Biology
- RNA Splicing
Background:
- The protein regulator of alternative splicing, RAVER1, is known to work with polypyrimidine tract-binding proteins (PTBPs).
- Its specific role in cancer cell fate and its broader functions beyond PTBP cooperation were not fully understood.
Purpose of the Study:
- To investigate the role of RAVER1 in controlling alternative splicing (AS) within cancer cell models.
- To elucidate RAVER1's function in tumor growth, epithelial-mesenchymal-transition (EMT), and the microRNA/RNA-induced silencing complex (miR/RISC) pathway.
Main Methods:
- Comprehensive splicing analyses in cancer cell models.
- Protein-association studies to identify interacting splicing regulators.
- Investigation of RAVER1's impact on the miR/RISC pathway and gene expression.
Main Results:
- RAVER1 exhibits a pro-oncogenic role, promoting tumor growth and EMT.
- RAVER1 regulates AS events in the miR/RISC pathway, including GW-enriched motifs in TNRC6 proteins essential for miR/RISC complex formation.
- Disruption of RAVER1 impairs miR/RISC activity, leading to deregulated gene expression and promoting TGFB-driven EMT.
Conclusions:
- RAVER1 is a crucial modulator of AS in the miR/RISC pathway, ensuring the proper function of miR/RISC effectors.
- RAVER1 activity is essential for balancing TGFB signaling and preventing TGFB-induced lethal EMT.
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