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.

Plos One
|June 20, 2020
PubMed
Abstract

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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