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Updated: Dec 18, 2025

In Vitro Selection of Engineered Transcriptional Repressors for Targeted Epigenetic Silencing
Published on: May 5, 2023
Two ways of epigenetic silencing of TFPI2 in cervical cancer
Alexandra Fullár1, Katalin Karászi1, Péter Hollósi1,2
11st Department of Pathology and Experimental Cancer Research, Semmelweis University, Budapest, Hungary.
Objective:
Comparison of human mRNA microarray results from tumor-associated and normal cervical fibroblasts revealed significant TFPI2 downregulation in tumor-associated fibroblasts isolated from cervical cancer, indicating that TFPI2 downregulation may play an important role in the pathogenesis of the disease. In the present work, we investigated the mechanism of TFPI2 downregulation in tumor-associated fibroblasts and tumor cells.
Methods:
In vitro models of monocultures and co-cultures were established with tumor cells and fibroblasts to explore the changes of TFPI-2 expression and epigenetic modifications of the TFPI2 gene.
Results:
The TFPI2 gene was hypermethylated only in tumor cells. Reduction of TFPI-2 protein levels in tumor-associated fibroblasts, although the gene was not methylated, suggested alternative regulatory mechanisms of gene expression, such as inhibition by microRNAs. The expression pattern of miR-23a, a gene thought to inhibit TFPI2 translation, showed changes strongly correlated to detected TFPI-2 protein alterations. Transfections with miR-23a mimics resulted in a decrease of TFPI-2 protein expression whereas miR-23a inhibitors increased the TFPI-2 amount. Due to downregulation of miR-23a expression by HPV in cancer cells, TFPI2 was silenced by promoter methylation. In contrary, miR-23a was active in HPV-free fibroblasts and inactivated TFPI2.
Conclusion:
These results indicate dual epigenetic inhibition of TFPI2 on the transcription level by promoter methylation in cancer cells and on the translation level by miR-23a in tumor-associated fibroblasts. As a consequence, inactivation of the TFPI2 gene plays a strategic role in the progression of cervical cancer.
Insights
TFPI2 is downregulated in cervical cancer via dual epigenetic mechanisms. Promoter methylation silences TFPI2 in cancer cells, while miR-23a inhibits its translation in tumor-associated fibroblasts, driving cancer progression.
Area of Science:
- Molecular biology
- Epigenetics
- Cancer research
Background:
- TFPI2 (Tissue Factor Pathway Inhibitor 2) downregulation is observed in cervical cancer-associated fibroblasts.
- Understanding the regulatory mechanisms of TFPI2 is crucial for elucidating cervical cancer pathogenesis.
Purpose of the Study:
- To investigate the mechanisms behind TFPI2 downregulation in tumor-associated fibroblasts and cervical cancer cells.
- To explore the role of epigenetic modifications and microRNAs in TFPI2 gene regulation.
Main Methods:
- Established in vitro models using monocultures and co-cultures of tumor cells and fibroblasts.
- Analyzed TFPI2 expression, gene methylation status, and microRNA expression patterns (specifically miR-23a).
- Utilized transfection experiments with miR-23a mimics and inhibitors to assess functional impact.
Main Results:
- TFPI2 gene hypermethylation was detected exclusively in tumor cells.
- Tumor-associated fibroblasts showed reduced TFPI-2 protein despite unmethylated genes, suggesting non-epigenetic regulation.
- miR-23a expression inversely correlated with TFPI-2 protein levels; miR-23a inhibited TFPI2 translation, while its inhibition increased TFPI-2.
- HPV downregulated miR-23a in cancer cells, leading to TFPI2 silencing via promoter methylation; conversely, active miR-23a inactivated TFPI2 in HPV-free fibroblasts.
Conclusions:
- TFPI2 inactivation occurs through dual epigenetic mechanisms: promoter methylation at the transcriptional level in cancer cells and miR-23a-mediated translational inhibition in tumor-associated fibroblasts.
- This dual epigenetic silencing of TFPI2 plays a significant role in cervical cancer progression.
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