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Updated: Dec 8, 2025

A Reporter Assay to Analyze Intronic microRNA Maturation in Mammalian Cells
Published on: June 16, 2022
The RNA-binding protein hnRNPU regulates the sorting of microRNA-30c-5p into large extracellular vesicles
Andreas Zietzer1, Mohammed Rabiul Hosen1, Han Wang1
1Heart Center Bonn, Medical Department II, University Hospital Bonn, Venusberg-Campus 1, Bonn, Germany.
Abstract:
The transfer of microRNAs (miRs) via extracellular vesicles (EVs) is a functionally relevant mechanism of intercellular communication that regulates both organ homoeostasis and disease development. Little is known about the packaging of miRs into EVs. Previous studies have shown that certain miRs are exported by RNA-binding proteins into small EVs, while for other miRs and for large EVs, in general, the export mechanisms remain unclear. Therefore, a proteomic analysis of endothelial cell-derived large EVs was performed, which revealed that heterogeneous nuclear ribonucleoprotein U (hnRNPU) is abundantly present in EVs. EVs were characterized by electron microscopy, immunoblotting and nanoparticle tracking analysis. Taqman microRNA array and single qPCR experiments identified specific miR patterns to be exported into EVs in an hnRNPU-dependent way. The specific role of hnRNPU for vesicular miR-sorting was confirmed independently by gain- and loss-of-function experiments. In our study, miR-30c-5p was the miR whose export was most significantly regulated by hnRNPU. Mechanistically, in silico binding analysis showed that the export of miRs into EVs depends on the binding efficiency of the respective miRs to hnRNPU. Among the exported miRs, a significant enrichment of the sequence motif AAMRUGCU was detected as a potential sorting signal. Experimentally, binding of miR-30c-5p to hnRNPU was confirmed independently by RNA-immunoprecipitation, electrophoretic mobility shift assay and reciprocally by miR-pulldown. Nuclear binding of miR-30c-5p to hnRNPU and subsequent stabilization was associated with a lower cytoplasmatic abundance and consequently reduced availability for vesicular export. hnRNPU-dependent miR-30c-5p export reduced cellular migration as well as pro-angiogenic gene expression in EV-recipient cells. In summary, hnRNPU retains miR-30c-5p and other miRs and thereby prevents their export into large EVs. The data presented provide a novel and functionally relevant mechanism of vesicular miR export.
Insights
Heterogeneous nuclear ribonucleoprotein U (hnRNPU) retains microRNAs (miRs), preventing their export into extracellular vesicles (EVs). This discovery reveals a novel mechanism controlling intercellular communication and miR sorting into large EVs.
Area of Science:
- Cell Biology
- Molecular Biology
- Extracellular Vesicles
- RNA Biology
Background:
- Intercellular communication via microRNAs (miRs) in extracellular vesicles (EVs) is crucial for homeostasis and disease.
- Mechanisms of miR packaging into EVs, especially large EVs, are not fully understood.
- Previous research indicated RNA-binding proteins mediate miR export into small EVs.
Purpose of the Study:
- To investigate the mechanisms of miR packaging into endothelial cell-derived large EVs.
- To identify proteins involved in the sorting of miRs into large EVs.
- To elucidate the functional consequences of miR export regulation by identified proteins.
Main Methods:
- Proteomic analysis of endothelial cell-derived large EVs.
- EV characterization using electron microscopy, immunoblotting, and nanoparticle tracking analysis.
- Taqman microRNA array, single qPCR, RNA-immunoprecipitation, electrophoretic mobility shift assay, and miR-pulldown to assess miR-hnRNPU interactions and export.
- Gain- and loss-of-function experiments to confirm hnRNPU's role in miR sorting.
- In silico binding analysis to predict miR-hnRNPU interactions and identify sorting signals.
Main Results:
- Heterogeneous nuclear ribonucleoprotein U (hnRNPU) was identified as abundant in large EVs.
- hnRNPU-dependent export of specific miRs, including miR-30c-5p, into EVs was demonstrated.
- hnRNPU binds miRs, with binding efficiency correlating with EV export; a potential sorting motif (AAMRUGCU) was detected.
- Nuclear binding of miR-30c-5p to hnRNPU reduced its cytoplasmic availability for vesicular export.
- hnRNPU-mediated miR-30c-5p export into EVs reduced recipient cell migration and pro-angiogenic gene expression.
Conclusions:
- hnRNPU acts as a regulator of miR export into large EVs by retaining miRs, such as miR-30c-5p.
- This study reveals a novel mechanism for miR sorting into large EVs, dependent on binding to hnRNPU.
- The findings provide new insights into the regulation of intercellular communication by EVs and miR trafficking.
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