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Updated: Aug 18, 2025

MicroRNA-based Regulation of Picornavirus Tropism
Published on: February 6, 2017
MicroRNA mimics can distort physiological microRNA effects on immune checkpoints by triggering an antiviral
Felix Prinz1,2, Katharina Jonas1,2, Amar Balihodzic1,2
1Division of Oncology, Department of Internal Medicine, Medical University of Graz, Graz, Austria.
Abstract:
The microRNA-200 family has wide-ranging regulatory functions in cancer development and progression. Above all, it is strongly associated with the epithelial-to-mesenchymal transition (EMT), a process during which cells change their epithelial to a mesenchymal phenotype and acquire invasive characteristics. More recently, miR-200 family members have also been reported to impact the immune evasion of cancer cells by regulating the expression of immunoinhibitory immune checkpoints (ICs) like PD-L1. Therefore, we aimed to comprehensively characterize this miR-200 family as a regulatory interface between EMT and immune evasion mechanisms in biliary tract cancer. Initial correlation analyses and transient overexpression experiments using miRNA mimics suggested miR-200c-3p as a putative regulator of ICs including PD-L1, LGALS9, and IDO1. However, these effects could not be confirmed in stable miR-200c-3p overexpression cell lines, nor in cells transiently transfected with miR-200c-3p mimic from an independent manufacturer. By shifting our efforts towards dissecting the mechanisms leading to these disparate effects, we observed that the initially used miR-200c-3p mimic triggered a double-stranded (ds)RNA-dependent antiviral response. Besides upregulating the ICs, this had substantial cellular consequences including an induction of interferon type I and type III expression, increased levels of intracellular dsRNA sensors, and a significantly altered cellular growth and apoptotic activity.Our study highlights the capability of miRNA mimics to non-specifically induce a dsRNA-mediated antiviral interferon response. Consequently, phenotypic alterations crucially distort physiological miRNA functions and might result in a major misinterpretation of previous and future miRNA studies, especially in the context of IC regulation.
Insights
MicroRNA mimics can trigger antiviral responses, skewing results for cancer research. This study reveals that observed effects on immune checkpoints were due to mimic-induced double-stranded RNA, not genuine microRNA function.
Area of Science:
- Oncology
- Molecular Biology
- Immunology
Background:
- The microRNA-200 family regulates epithelial-to-mesenchymal transition (EMT) and cancer progression.
- Recent studies suggest miR-200 family members influence cancer immune evasion by targeting immune checkpoints (ICs).
- Biliary tract cancer (BTC) research has explored the miR-200 family's role in EMT and immune evasion.
Purpose of the Study:
- To investigate the miR-200 family's role as a regulatory link between EMT and immune evasion in biliary tract cancer.
- To characterize the specific functions of miR-200c-3p in regulating immune checkpoints like PD-L1, LGALS9, and IDO1.
- To identify the mechanisms behind discrepancies observed in miR-200c-3p mimic experiments.
Main Methods:
- Correlation analyses and transient overexpression of miR-200c-3p mimics.
- Generation of stable miR-200c-3p overexpressing cell lines.
- Investigation of cellular responses to mimic transfection, including interferon expression and dsRNA sensor levels.
Main Results:
- Initial experiments suggested miR-200c-3p regulated ICs, but these findings were not reproducible in stable cell lines or with mimics from different sources.
- The miR-200c-3p mimic induced a non-specific double-stranded (ds)RNA-dependent antiviral response.
- This response led to interferon induction, altered dsRNA sensor activity, and changes in cell growth and apoptosis.
Conclusions:
- MicroRNA mimics can elicit artefactual dsRNA-mediated antiviral responses, confounding physiological miRNA function studies.
- Phenotypic alterations caused by mimics can lead to misinterpretation of results, particularly concerning immune checkpoint regulation.
- Caution is advised in interpreting miRNA mimic studies, especially those investigating immune evasion mechanisms in cancer.
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