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MicroRNA-based Regulation of Picornavirus Tropism
Published on: February 6, 2017
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.
Abstract:
Numerous microRNAs (miRNAs), small non-coding RNAs encoded in the human genome, have been shown to be involved in cancer pathogenesis and progression. There is evidence that some of these miRNAs possess proapoptotic or proliferation promoting roles in the cell by negatively regulating target mRNAs. Oncogenic viruses are able to produce persistent infection, favoring tumor development by deregulating cell proliferation and inhibiting apoptosis. It has been recently suggested that cellular miRNAs may participate in host-virus interactions, influencing viral replication. Many mammalian viruses counteract this cellular antiviral defense by using viral proteins but also by encoding viral miRNAs involved in virus-induced tumorigenesis. Interferons (IFNs) modulate a number of non-coding RNA genes, especially miRNAs, that may be used by mammalian organisms as a mechanism of IFN system to combat viral infection and related diseases. In particular, IFNs might induce specific cellular miRNAs that target viral transcripts thereby using this strategy as part of their effectiveness against invading viruses. Therefore IFNs, interferon stimulated genes and miRNAs could act synergistically as innate response to virus infection to induce a potent non-permissive cellular environment for virus replication and virus-induced cancer. The relevance of this reviewed research topic is clearly related to the observation that although virus infections are responsible of specific tumors, other unidentified genetic alterations are likely involved in the induction of malignant transformation. The identification of such genetic alterations, i.e. miRNA expression in transformed cells, would be of considerable importance for the analysis of the pathogenesis and for the treatment of cancer induced by specific viruses as well as for the advancement of the current knowledge on the molecular mechanisms underlying virus-host interaction. In this respect, we will review also the important, still little explored, roles of miRNAs acting both as IFN-stimulated anti-viral molecules and as critical regulators of IFNs and IFN-stimulated genes.
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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