MicroRNAs in virus-induced tumorigenesis and IFN system

Gianna Fiorucci1, Maria Vincenza Chiantore2, Giorgio Mangino3

  • 1Institute of Biology, Molecular Medicine and Nanobiotechnologies, Consiglio Nazionale delle Ricerche, Rome, Italy; Department of Infectious, Parasitic and Immune-Mediated Diseases, Istituto Superiore di Sanità, Rome, Italy.

Insights

MicroRNAs (miRNAs) play a role in virus-induced cancers. Interferons (IFNs) can induce cellular miRNAs that target viruses, acting as an antiviral defense and potentially combating cancer.

Area of Science:

  • Molecular Biology
  • Virology
  • Oncology

Background:

  • MicroRNAs (miRNAs) are small non-coding RNAs involved in cancer pathogenesis.
  • Oncogenic viruses can promote tumor development by disrupting cell proliferation and apoptosis.
  • Cellular miRNAs are implicated in host-virus interactions and viral replication.

Purpose of the Study:

  • To review the role of cellular and viral microRNAs in virus-induced cancer.
  • To explore the interplay between interferons (IFNs), interferon-stimulated genes, and miRNAs in antiviral defense.
  • To highlight the potential of miRNAs as therapeutic targets in virus-associated malignancies.

Main Methods:

  • Literature review of studies on miRNAs, oncogenic viruses, and interferons.
  • Analysis of molecular mechanisms underlying miRNA-mediated regulation of viral replication and host-virus interactions.
  • Synthesis of current knowledge on the dual role of miRNAs as antiviral and oncogenic molecules.

Main Results:

  • Cellular miRNAs can inhibit viral replication, while viral miRNAs can promote tumorigenesis.
  • Interferons can induce cellular miRNAs that target viral transcripts, contributing to antiviral immunity.
  • miRNAs and interferon-stimulated genes may act synergistically to create an antiviral cellular environment.

Conclusions:

  • miRNAs are critical regulators in the context of virus-induced cancers, acting as both tumor suppressors and oncogenes.
  • Understanding the complex interactions between IFNs, miRNAs, and viruses is crucial for developing novel cancer therapies.
  • Further research into miRNA expression in transformed cells is essential for elucidating pathogenesis and treatment strategies for virus-associated cancers.

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